—°F Boise, ID
◈ Cross-Vertical Intelligence · Treasure Valley · Boise Standard

Land Use Planning ↔ relates to ↔ Energy Utilities

38 Wikipedia bridge articles confirmed in both vertical ledgers. 240 deterministic cross-vertical edges. 6,073 external source links harvested. Every edge provenance-stamped. Every claim auditable.

38 QID Bridge Articles
240 Cross Edges
6,073 External Sources
290 Wikipedia Articles
40 🌲 Evergreen
172 🌿 Branch
HIGH SIGNAL · refinery-treasurevalley-v1.0.0
◈ Machine-Readable Schema
Deterministic Cross-Vertical Summary
PASS 2 · ZERO LLM
Entities Compared
Land Use Planning
× Energy Utilities
QID Bridge Articles
38
confirmed Wikipedia overlap
Total Cross Edges
240
External Sources Harvested
6,073
from Wikipedia external links
Geography
Treasure Valley, Ada County, Canyon County, Idaho, United States
Gate Tier
high
Haiku FAQ generated
Strongest Edge
Groundwater
score: 1.0000  ·  type: exact_title_cross  ·  45 shared tokens
QID Bridge Titles (20)
GroundwaterBureau of ReclamationInfrastructureStormwaterArrowrock DamAquiferBoise State UniversityPublic utilityClean Water ActBuilding codeCanalCivil engineeringCollege of Western IdahoTreasure ValleyWastewaterWater rightBoise RiverBoise metropolitan areaIrrigation districts in the United StatesDeer Flat Upper Embankment
Shared Semantics (20 tokens)
idahoboisewaterpopulationriverpublicwesternadametropolitanlandlargestsystemsvalleyfederalirrigationlawnationalhomecontrollocal
Pipeline
refinery-treasurevalley-v1.0.0
Generated
2026-07-17 21:40:23 UTC
Content Hash
5d6bf5658c77c05e
◈ Wikipedia Bridge Articles
QID Overlap — Confirmed in Both Vertical Ledgers
38 BRIDGES
Groundwater
Q161598 EXACT TITLE 1.000
QID OVERLAP: Q161598 in land_use_planning (tier:evergreen) and energy_utilities (tier:evergreen). | SHARED TOKENS (45): "agricultural", "agriculture", "aquifer", "become", "capacity", "central", "change", "clean", "contains", "discharge", "distribution", "environmental", "field", "form", "formation", "ground", "groundwater", "household", "industrial", "land".... | EXACT TITLE in land_use_planning: "Groundwater". | EXACT TITLE in energy_utilities: "Groundwater".
agriculturalagricultureaquiferbecomecapacitycentralchangecleancontainsdischargedistributionenvironmentalfieldformformationgroundgroundwaterhouseholdindustriallandlargestmajormovementmultiplemunicipaloperatingpercentpipelinesprocessprovide+15
d the water table. Groundwater is recharged from the surface; it may discharge from the surface naturally at springs and seeps, and can form oases or wetlands. Groundwater is also often withdrawn for agricultural, municipal, and industrial use by constructing and operating extraction wells. The study of the distribution and movement of groundwater is hydrogeology, also called groundwater hydrology. Typically, groundwater is thought of as water flowing through shallow aquifers, but, in the technical sense, it can also contain soil moisture, permafrost (frozen soil), immobile water in very low permeability bedrock, and deep geothermal or oil formation water. Groundwater is hypothesized to provide lubrication that can possibly influence the movement of faults. It is likely that much of Earth's subsurface contains some water, which may be mixed with other fluids in some instances. Groundwater is often cheaper, more convenient and less vulnerable to pollution than surface water. Therefore, it is commonly used for public drinking water supplies. For example, groundwater provides the largest source of usable water storage in the United States, and California annually withdraws the largest amount of groundwater of all the states. Underground reservoirs contain far more water than the capacity of all surface reservoirs and lakes in the US, including the Great Lakes. Many municipal water supplies are derived solely from groundwater. Over 2 billion people rely on it as their primary water source worldwide. Human use of groundwater causes environmental problems. For example, polluted groundwater is less visible and more difficult to clean up than pollution in rivers and lakes. Groundwater pollution most often results from improper disposal of wastes on land. Major sources include industrial and household chemicals and garbage landfills, excessive fertilizers and pesticides used in agriculture, industrial waste lagoons, tailings and process wastewater from mines, industrial fracking, oil field brine pits, leaking underground oil storage tanks and pipelines, sewage sludge and septic systems. Additionally, groundwater is susceptible to saltwater intrusion in coastal areas and can cause land subsidence when extracted unsustainably, leading to sinking cities (like Bangkok) and loss in elevation (such as the multiple meters lost in the Central Valley of California). These issues are made more complicated by sea level rise and other effects of climate change, particularly those on the water cycle.
Quantities Groundwater is the most accessed source of freshwater around the world, including as drinking water, irrigation, and manufacturing. Groundwater accounts for about half of the world's drinking water, 40% of its irrigation water, and a third of water for industrial purposes. Another estimate stated that globally groundwater accounts for about one third of all water withdrawals, and surface water for the other two thirds. Groundwater provides drinking water to at least 50% of the global population. About 2.5 billion people depend solely on groundwater resources to satisfy their basic daily water needs. A similar estimate was published in 2021 which stated that "groundwater is estimated to supply between a quarter and a third of the world's annual freshwater withdrawals to meet agricultural, industrial and domestic demands." Global freshwater withdrawal was probably around 600 km3 per year in 1900 and increased to 3,880 km3 per year in 2017. The rate of increase was especially high (around 3% per year) during the period 1950–1980, partly due to a higher population growth rate, and partly to rapidly increasing groundwater development, particularly for irrigation. The rate of increase is (as per 2022) approximately 1% per year, in tune with the current population growth rate. Global groundwater depletion has been calculated to be between 100 and 300 km3 per year. This depletion is mainly caused by "expansion of irrigated agriculture in drylands". The Asia-Pacific region is the largest groundwater abstractor in the world, containing seven out of the ten countries that extract most groundwater (Bangladesh, China, India, Indonesia, Iran, Pakistan and Turkey).
Municipal and industrial water supplies are provided through large wells. Multiple wells for one water supply source are termed "wellfields", which may withdraw water from confined or unconfined aquifers. Using groundwater from deep, confined aquifers provides more protection from surface water contamination. Some wells, termed "collector wells", are specifically designed to induce infiltration of surface (usually river) water. Aquifers that provide sustainable fresh groundwater to urban areas and for agricultural irrigation are typically close to the ground surface (within a couple of hundred metres) and have some recharge by fresh water. This recharge is typically from rivers or meteoric water (precipitation) that percolates into the aquifer through overlying unsaturated materials. In cases where the groundwater has unacceptable levels of salinity or specific ions, desalination is a common treatment,.
Bureau of Reclamation
Q1010548 EXACT TITLE 1.000
QID OVERLAP: Q1010548 in land_use_planning (tier:evergreen) and energy_utilities (tier:evergreen). | SHARED TOKENS (32): "act", "applied", "become", "built", "bureau", "delivery", "department", "development", "farmland", "federal", "funding", "irrigation", "lands", "largest", "law", "management", "million", "operation", "potential", "power".... | EXACT TITLE in land_use_planning: "Bureau of Reclamation". | EXACT TITLE in energy_utilities: "Bureau of Reclamation".
actappliedbecomebuiltbureaudeliverydepartmentdevelopmentfarmlandfederalfundingirrigationlandslargestlawmanagementmillionoperationpotentialpowerproduceprogramprojectsprovisionsreclamationresourcerevenuesourcesupplythroughout+2
the nation's vegetables and 25% of its fruits and nuts. The bureau is also the second largest producer of hydroelectric power in the western U.S. On June 17, 1902, in accordance with the Reclamation Act, Secretary of the Interior Ethan Allen Hitchcock established the U.S. Reclamation Service within the U.S. Geological Survey (USGS). The new Reclamation Service studied potential water development projects in each western state with federal lands. Revenue from sale of federal lands was the initial source of the program's funding.
ial source of the program's funding. Because Texas had no federal lands, it did not become a Reclamation state until 1906, when Congress passed a law including it in the provisions of the Reclamation Act. History From 1902 to 1907, Reclamation began about 30 projects in Western states. Then, in 1907, the Secretary of the Interior separated the Reclamation Service from the USGS and created an independent bureau within the Department of the Interior. Frederick Haynes Newell was appointed the first director of the new bureau. Beginning with the third person to take over the direction of Reclamation in 1923, David W. Davis, the title was changed from Director to Commissioner. In the early years, many projects encountered problems: lands or soils included in projects were unsuitable for irrigation; land speculation sometimes resulted in poor settlement patterns; proposed repayment schedules could not be met by irrigators who had high land-preparation and facilities-construction costs; settlers were inexperienced in irrigation farming; waterlogging of irrigable lands required expensive drainage projects; and projects were built in areas which could only grow low-value crops. In 1923 the agency was renamed the "Bureau of Reclamation". In 1924, however, in the face of increasing settler unrest and financial woes, the "Fact Finder's Report" spotlighted major problematic issues; the Fact Finders Act in late 1924 sought to resolve some of these problems. In 1928 Congress authorized the Boulder Canyon (Hoover Dam) Project, and large appropriations began, for the first time, to flow to Reclamation from the general funds of the United States. The authorization came only after a hard-fought debate about the pros and cons of public power versus private power. The heyday of Reclamation construction of water facilities occurred during the Depression and the 35 years after World War II. From 1941 to 1947, Civilian Public Service labor was used to carry on projects otherwise interrupted by the war effort. The last major authorization for construction projects occurred in the late 1960s, while a parallel evolution and development of the American environmental movement began to result in strong opposition to water development projects. Even the 1976 failure of Teton Dam as it filled for the first time did not diminish Reclamation's strong international reputation in water development circles. However, this first and only failure of a major Reclamation Bureau dam led to subsequent strengthening of its dam-safety program to avoid similar problems. Even so, the failure of Teton Dam, the environmental movement, and the announcement of President Carter's "hit list" on water projects profoundly affected the direction of Reclamation's programs and activities. Reclamation operates about 180 projects in the 17 western states. The total Reclamation investment for completed project facilities in September 1992 was about $11 billion. Reclamation projects provide agricultural, household, and industrial water to about one‑third of the population of the American West. About 5% of the land area of the West is irrigated, and Reclamation provides water to about one-fifth of that area, some 9,120,000 acres (37,000 km2) in 1992. Reclamation is a major American generator of electricity. As of 2007, Reclamation had 58 power plants on‑line and generated 125,000 GJ of electricity. From 1988 to 1994, Reclamation underwent major reorganization as construction on projects authorized in the 1960s and earlier drew to an end. Reclamation wrote that "The arid West essentially has been reclaimed. The major rivers have been harnessed and facilities are in place or are being completed to meet the most pressing current water demands and those of the immediate future". Emphasis in Reclamation programs shifted from construction to operation and maintenance of existing facilities. Reclamation's redefined official mission is to "manage, develop, and protect water and related resources in an environmentally and economically sound manner in the interest of the American public".
From 1902 to 1907, Reclamation began about 30 projects in Western states. Then, in 1907, the Secretary of the Interior separated the Reclamation Service from the USGS and created an independent bureau within the Department of the Interior. Frederick Haynes Newell was appointed the first director of the new bureau. Beginning with the third person to take over the direction of Reclamation in 1923, David W. Davis, the title was changed from Director to Commissioner. In the early years, many projects encountered problems: lands or soils included in projects were unsuitable for irrigation; land speculation sometimes resulted in poor settlement patterns; proposed repayment schedules could not be met by irrigators who had high land-preparation and facilities-construction costs; settlers were inexperienced in irrigation farming; waterlogging of irrigable lands required expensive drainage projects; and projects were built in areas which could only grow low-value crops. In 1923 the agency was renamed the "Bureau of Reclamation". In 1924, however, in the face of increasing settler unrest and financial woes, the "Fact Finder's Report" spotlighted major problematic issues; the Fact Finders Act in late 1924 sought to resolve some of these problems. In 1928 Congress authorized the Boulder Canyon (Hoover Dam) Project, and large appropriations began, for the first time, to flow to Reclamation from the general funds of the United States. The authorization came only after a hard-fought debate about the pros and cons of public power versus private power. The heyday of Reclamation construction of water facilities occurred during the Depression and the 35 years after World War II. From 1941 to 1947, Civilian Public Service labor was used to carry on projects otherwise interrupted by the war effort. The last major authorization for construction projects occurred in the late 1960s, while a parallel evolution and development of the American environmental movement began to result in strong opposition to water development projects. Even the 1976 failure of Teton Dam as it filled for the first time did not diminish Reclamation's strong international reputation in water development circles. However, this first and only failure of a major Reclamation Bureau dam led to subsequent strengthening of its dam-safety program to avoid similar problems. Even so, the failure of Teton Dam, the environmental movement, and the announcement of President Carter's "hit list" on water projects profoundly affected the direction of Reclamation's programs and activities. Reclamation operates about 180 projects in the 17 western states. The total Reclamation investment for completed project facilities in September 1992 was about $11 billion. Reclamation projects provide agricultural, household, and industrial water to about one‑third of the population of the American West. About 5% of the land area of the West is irrigated, and Reclamation provides water to about one-fifth of that area, some 9,120,000 acres (37,000 km2) in 1992. Reclamation is a major American generator of electricity. As of 2007, Reclamation had 58 power plants on‑line and generated 125,000 GJ of electricity. From 1988 to 1994, Reclamation underwent major reorganization as construction on projects authorized in the 1960s and earlier drew to an end. Reclamation wrote that "The arid West essentially has been reclaimed. The major rivers have been harnessed and facilities are in place or are being completed to meet the most pressing current water demands and those of the immediate future". Emphasis in Reclamation programs shifted from construction to operation and maintenance of existing facilities. Reclamation's redefined official mission is to "manage, develop, and protect water and related resources in an environmentally and economically sound manner in the interest of the American public".
Infrastructure
Q121359 EXACT TITLE 1.000
QID OVERLAP: Q121359 in land_use_planning (tier:evergreen) and energy_utilities (tier:evergreen). | SHARED TOKENS (43): "agencies", "change", "community", "components", "cultural", "development", "different", "distinct", "economic", "economy", "electrical", "emergency", "enforcement", "environmental", "facilities", "firms", "function", "industrial", "infrastructure", "institutions".... | EXACT TITLE in land_use_planning: "Infrastructure". | EXACT TITLE in energy_utilities: "Infrastructure".
agencieschangecommunitycomponentsculturaldevelopmentdifferentdistincteconomiceconomyelectricalemergencyenforcementenvironmentalfacilitiesfirmsfunctionindustrialinfrastructureinstitutionsinternationallawmaintainmanagementneedednetworksofficialparksphysicalpolicy+13
at maintain the economic, health, social, environmental, and cultural standards of a place. This includes educational programs, official statistics, parks and recreational facilities, law enforcement agencies, and emergency services. Classifications A 1987 US National Research Council panel adopted the term "public works infrastructure", referring to: "... both specific functional modes – highways, streets, roads, and bridges; mass transit; airports and airways; water supply and water resources; wastewater management; solid-waste treatment and disposal; electric power generation and transmission; telecommunications; and hazardous waste management – and the combined system these modal elements comprise.
Transport infrastructure – vehicles, road, rail, cable and financing of transport Aviation infrastructure – air traffic control technology in aviation Rail transport – trackage, signals, electrification of rails Road transport – roads, bridges, tunnels Critical infrastructure – assets required to sustain human life Energy infrastructure – transmission and storage of fossil fuels and renewable sources Information and communication infrastructure – systems of information storage and distribution Public capital – government-owned assets Public works – municipal infrastructure, maintenance functions and agencies Municipal solid waste – generation, collection, management of trash/garbage Sustainable urban infrastructure – technology, architecture, policy for sustainable living Water supply network – the distribution and maintenance of water supply Wastewater infrastructure – disposal and treatment of wastewater Infrastructure-based development
Civil defense planners and developmental economists generally refer to both hard and soft infrastructure, including public services such as schools and hospitals, emergency services such as police and fire fighting, and basic services in the economic sector. The notion of infrastructure-based development combining long-term infrastructure investments by government agencies at central and regional levels with public private partnerships has proven popular among economists in Asia (notably Singapore and China), mainland Europe, and Latin America. Military Military infrastructure is the buildings and permanent installations necessary for the support of military forces, whether they are stationed in bases, being deployed or engaged in operations.
Stormwater
Q1421263 EXACT TITLE 1.000
QID OVERLAP: Q1421263 in land_use_planning (tier:evergreen) and energy_utilities (tier:evergreen). | SHARED TOKENS (24): "become", "create", "demand", "directly", "events", "falls", "groundwater", "land", "large", "major", "natural", "population", "potential", "reduce", "related", "resource", "right", "soil", "stormwater", "timing".... | EXACT TITLE in land_use_planning: "Stormwater". | EXACT TITLE in energy_utilities: "Stormwater".
becomecreatedemanddirectlyeventsfallsgroundwaterlandlargemajornaturalpopulationpotentialreducerelatedresourcerightsoilstormwatertimingtreatmenturbanvolumewater
Stormwater, also written storm water, is water that originates from precipitation (storm), including heavy rain and meltwater from hail and snow. Stormwater can soak into the soil (infiltrate) and become groundwater, be stored on depressed land surface in ponds and puddles, evaporate back into the atmosphere, or contribute to surface runoff. Most runoff is conveyed directly as surface water to nearby streams, rivers or other large water bodies (wetlands, lakes and oceans) without treatment. In natural landscapes, such as forests, soil absorbs much of the stormwater. Plants also reduce stormwater by improving infiltration, intercepting precipitation as it falls, and by taking up water through their roots. In developed environments, such as cities, unmanaged stormwater can create two major issues: one related to the volume and timing of runoff (flooding) and the other related to potential contaminants the water is carrying (water pollution). In addition to the pollutants carried in stormwater runoff, urban runoff is being recognized as a cause of pollution in its own right. Stormwater is also an important resource as human population and demand for water grow, particularly in arid and drought-prone climates.
Stormwater creation of sinkhole collapses An example of urban stormwater creating a sinkhole collapse is the February 25, 2002 Dishman Lane collapse in Bowling Green, Kentucky where a sinkhole suddenly dropped the road under four traveling vehicles. The nine-month repair of the Dishman Lane collapse cost a million dollars but there remains the potential for future problems. In undisturbed areas with natural subsurface (karst) drainage, soil and rock fragments choke karst openings, thereby being a self-limitation to the growth of openings. The undisturbed karst drainage system becomes balanced with the climate so it can drain the water produced by most storms. However, problems occur when the landscape is altered by urban development. In urban areas with natural subsurface karst drainage there are no surface streams for the increased stormwater from impervious surfaces such as roofs, parking lots, and streets to receive drainage. Instead, the stormwater enters the subsurface drainage system by moving down through the ground. When the subsurface water flow becomes great enough to transport soil and rock fragments, the karst openings grow rapidly. Where karst openings are roofed by supportive (competent) limestone, there frequently is no surface warning that an opening has grown so large it will suddenly collapse catastrophically. It is recommended that land-use planning agencies avoid karst areas when considering new development projects.
so reduce stormwater by improving infiltration, intercepting precipitation as it falls, and by taking up water through their roots. In developed environments, such as cities, unmanaged stormwater can create two major issues: one related to the volume and timing of runoff (flooding) and the other related to potential contaminants the water is carrying (water pollution). In addition to the pollutants carried in stormwater runoff, urban runoff is being recognized as a cause of pollution in its own right. Stormwater is also an important resource as human population and demand for water grow, particularly in arid and drought-prone climates.
Arrowrock Dam
Q117911 EXACT TITLE 1.000
QID OVERLAP: Q117911 in land_use_planning (tier:branch) and energy_utilities (tier:evergreen). | SHARED TOKENS (19): "agriculture", "american", "boise", "bureau", "civil", "counties", "engineering", "engineers", "feet", "idaho", "irrigation", "national", "operated", "provide", "reclamation", "reservoir", "river", "water", "western". | EXACT TITLE in energy_utilities: "Arrowrock Dam".
agricultureamericanboisebureaucivilcountiesengineeringengineersfeetidahoirrigationnationaloperatedprovidereclamationreservoirriverwaterwestern
nd Elmore counties, upstream of the Lucky Peak Dam and reservoir. The spillway elevation for Arrowrock is 3,219 feet (981 m) above sea level and its primary purpose is to provide irrigation water for agriculture. The dam was designated as a National Historic Civil Engineering Landmark by the American Society of Civil Engineers in 2016, and is operated by the U.S. Bureau of Reclamation. Preparations In 1910, the Reclamation Service began to consider another storage facility farther east on the Boise River. After several surveys, engineers decided upon the Arrowrock site which had previously been the site of a private irrigation venture under the direction of Arthur De Wint Foote yet failed for lack of funding. The Arrowrock site is at the confluence of the main channel and the south fork. That was to be the most ambitious project to date for Reclamation. At 348 feet (106 m), Arrowrock would be the largest concrete arch dam in the world. Prior to construction, considerable preparatory work would need to be completed. As the structure was some twenty miles (32 km) upstream from the Boise River Diversion Dam, routing supplies to the worksite would be a massive undertaking unto itself. The Reclamation Service elected to construct a new rail line on the old wagon road leading north to Idaho City. The railroad would begin at the Barberton mill near the Diversion Dam and extend to through a winding canyon up to Arrowrock. Even before the dam had been approved, Reclamation began work on the rail line. Some significant problems existed with construction of the railroad. The Barberton Lumber Company owned the road's right-of-way. That meant that the Reclamation Service needed to come to an agreement over ownership of the rail line. In an unprecedented move, the government agreed to lease the track from Barberton but run the actual locomotive. Part of this agreement stipulated that the line would remain a common carrier. That made the Arrowrock & Boise Railroad the first publicly owned line in the nation. The Service hid this fact from President William Howard Taft when it applied for the Arrowrock Dam's approval. Fortunately for Reclamation, Taft failed to recognize the loophole and in June 1910, the entire project went forward. However, when the Oregon Shortline refused to honor the pact between Barberton and Reclamation, the Arrowrock & Boise terminal was reduced to a field just outside the Barber lumberyard. On August 22, 1910, the entire deal was finalized and work began on the line to the Arrowrock site. Salt Lake City's Manly Brothers won the contract for grading the Arrowrock & Boise road in May 1911. The government called for force account to lay the track from Barber to the work site. Although the construction was delayed several times by the shortage of railroad ties, workers finished the track in early November. By most accounts, the trip through the canyon was a very long and harrowing event. For the first several months, riders were asked to disembark at the unfinished Gooseneck Bridge while the cars were winched across one at a time. However, once they arrived, most passengers were surprised by what they found. Not only was the view breathtaking but the "work" camp offered amenities that were unavailable to some residents of the Treasure Valley. Not only was the site fully powered, but also it provided a central heating plant, running water and an efficient sewage system. Along with the Reclamation offices, the Arrowrock camp carried a hospital, mess hall, post office, and hotel. Workers and visitors were offered lodging in the site's hotel, bunkhouses, or cottages. In addition to the outdoor recreational activities, the camp also operated a YMCA, school, and dancehall. At the peak of construction, some 1,400 people had called Arrowrock home, including some 200 families. To provide power for the site, Reclamation retrofitted The Boise River Diversion Dam with a small powerhouse. Finished in 1912, the plant's three generators produced 1,500 kilowatts of electricity for Arrowrock's camp, sawmills, and giant cement mixers. The German made Allis-Chalmers 725 horsepower (541 kW) turbines, the first in the world to be built with a vertical shaft design. Along with the power lines, government workers hung a two-way phone cable to connect Arrowrock with the outside world. In 1976, the power plant was added to the National Register of Historic Places. After being refurbished by the Bonneville Power Administration in 2002, it is now on ready reserve status and occasionally provides surplus power during times of peak demand. Special care was made to maintain the historic qualities of the powerhouse.
Arrowrock is 3,219 feet (981 m) above sea level and its primary purpose is to provide irrigation water for agriculture. The dam was designated as a National Historic Civil Engineering Landmark by the American Society of Civil Engineers in 2016, and is operated by the U.S. Bureau of Reclamation. Preparations In 1910, the Reclamation Service began to consider another storage facility farther east on the Boise River. After several surveys, engineers decided upon the Arrowrock site which had previously been the site of a private irrigation venture under the direction of Arthur De Wint Foote yet failed for lack of funding. The Arrowrock site is at the confluence of the main channel and the south fork. That was to be the most ambitious project to date for Reclamation. At 348 feet (106 m), Arrowrock would be the largest concrete arch dam in the world. Prior to construction, considerable preparatory work would need to be completed. As the structure was some twenty miles (32 km) upstream from the Boise River Diversion Dam, routing supplies to the worksite would be a massive undertaking unto itself. The Reclamation Service elected to construct a new rail line on the old wagon road leading north to Idaho City. The railroad would begin at the Barberton mill near the Diversion Dam and extend to through a winding canyon up to Arrowrock. Even before the dam had been approved, Reclamation began work on the rail line. Some significant problems existed with construction of the railroad. The Barberton Lumber Company owned the road's right-of-way. That meant that the Reclamation Service needed to come to an agreement over ownership of the rail line. In an unprecedented move, the government agreed to lease the track from Barberton but run the actual locomotive. Part of this agreement stipulated that the line would remain a common carrier. That made the Arrowrock & Boise Railroad the first publicly owned line in the nation. The Service hid this fact from President William Howard Taft when it applied for the Arrowrock Dam's approval. Fortunately for Reclamation, Taft failed to recognize the loophole and in June 1910, the entire project went forward. However, when the Oregon Shortline refused to honor the pact between Barberton and Reclamation, the Arrowrock & Boise terminal was reduced to a field just outside the Barber lumberyard. On August 22, 1910, the entire deal was finalized and work began on the line to the Arrowrock site. Salt Lake City's Manly Brothers won the contract for grading the Arrowrock & Boise road in May 1911. The government called for force account to lay the track from Barber to the work site. Although the construction was delayed several times by the shortage of railroad ties, workers finished the track in early November. By most accounts, the trip through the canyon was a very long and harrowing event. For the first several months, riders were asked to disembark at the unfinished Gooseneck Bridge while the cars were winched across one at a time. However, once they arrived, most passengers were surprised by what they found. Not only was the view breathtaking but the "work" camp offered amenities that were unavailable to some residents of the Treasure Valley. Not only was the site fully powered, but also it provided a central heating plant, running water and an efficient sewage system. Along with the Reclamation offices, the Arrowrock camp carried a hospital, mess hall, post office, and hotel. Workers and visitors were offered lodging in the site's hotel, bunkhouses, or cottages. In addition to the outdoor recreational activities, the camp also operated a YMCA, school, and dancehall. At the peak of construction, some 1,400 people had called Arrowrock home, including some 200 families. To provide power for the site, Reclamation retrofitted The Boise River Diversion Dam with a small powerhouse. Finished in 1912, the plant's three generators produced 1,500 kilowatts of electricity for Arrowrock's camp, sawmills, and giant cement mixers. The German made Allis-Chalmers 725 horsepower (541 kW) turbines, the first in the world to be built with a vertical shaft design. Along with the power lines, government workers hung a two-way phone cable to connect Arrowrock with the outside world. In 1976, the power plant was added to the National Register of Historic Places. After being refurbished by the Bonneville Power Administration in 2002, it is now on ready reserve status and occasionally provides surplus power during times of peak demand. Special care was made to maintain the historic qualities of the powerhouse.
U.S. Bureau of Reclamation Archived 2012-09-26 at the Wayback Machine - Arrowrock Dam U.S. Bureau of Reclamation - major storage reservoirs in the Boise & Payette River basins - current levels & flows Historic American Engineering Record (HAER) documentation, filed under Boise River, Twin Springs, Boise County, ID: HAER No. ID-27, "Arrowrock Dam", 101 photos, 123 data pages, 11 photo caption pages HAER No.
Aquifer
Q208791 EXACT TITLE 1.000
QID OVERLAP: Q208791 in land_use_planning (tier:evergreen) and energy_utilities (tier:evergreen). | SHARED TOKENS (17): "aquifer", "beyond", "formation", "groundwater", "home", "industrial", "land", "layer", "major", "materials", "pressure", "related", "source", "study", "underlying", "water", "wells". | EXACT TITLE in land_use_planning: "Aquifer". | EXACT TITLE in energy_utilities: "Aquifer".
aquiferbeyondformationgroundwaterhomeindustriallandlayermajormaterialspressurerelatedsourcestudyunderlyingwaterwells
An aquifer is an underground layer of water-bearing material consisting of permeable or fractured rock, or of unconsolidated materials (gravel, sand, or silt). Aquifers vary greatly in their characteristics. The study of water flow in aquifers and the characterization of aquifers is called hydrogeology. Related concepts include aquitard, a bed of low permeability along an aquifer, and aquiclude (or aquifuge), a solid and impermeable region underlying or overlying an aquifer, the pressure of which could lead to the formation of a confined aquifer. Aquifers can be classified as saturated versus unsaturated, aquifers versus aquitards, confined versus unconfined, isotropic versus anisotropic, and porous, karst, fractured, or transboundary. Groundwater from aquifers can be sustainably harvested by humans through the use of wells. This groundwater is mainly used for agricultral purposes but is used for other reasons such as home or industrial use.
aquifers is called hydrogeology. Related concepts include aquitard, a bed of low permeability along an aquifer, and aquiclude (or aquifuge), a solid and impermeable region underlying or overlying an aquifer, the pressure of which could lead to the formation of a confined aquifer. Aquifers can be classified as saturated versus unsaturated, aquifers versus aquitards, confined versus unconfined, isotropic versus anisotropic, and porous, karst, fractured, or transboundary. Groundwater from aquifers can be sustainably harvested by humans through the use of wells. This groundwater is mainly used for agricultral purposes but is used for other reasons such as home or industrial use.
a solid and impermeable region underlying or overlying an aquifer, the pressure of which could lead to the formation of a confined aquifer. Aquifers can be classified as saturated versus unsaturated, aquifers versus aquitards, confined versus unconfined, isotropic versus anisotropic, and porous, karst, fractured, or transboundary. Groundwater from aquifers can be sustainably harvested by humans through the use of wells. This groundwater is mainly used for agricultral purposes but is used for other reasons such as home or industrial use.
Boise State University
Q891082 EXACT TITLE 1.000
QID OVERLAP: Q891082 in land_use_planning (tier:evergreen) and energy_utilities (tier:evergreen). | SHARED TOKENS (19): "activity", "among", "boise", "business", "college", "division", "economics", "education", "engineering", "idaho", "independent", "million", "program", "programs", "public", "reported", "research", "school", "university". | EXACT TITLE in land_use_planning: "Boise State University". | EXACT TITLE in energy_utilities: "Boise State University".
activityamongboisebusinesscollegedivisioneconomicseducationengineeringidahoindependentmillionprogramprogramspublicreportedresearchschooluniversity
, Arts & Sciences, and Education; MPA program in the School of Public Service; and the MPH program in the College of Health Sciences. It is classified among "R2: Doctoral Universities – High research activity".
The university also has an honors college. Within the College of Arts and Sciences is the School of the Environment, approved by the Idaho State Board of Education in 2022 and established in 2023. Boise State's fall enrollment in 2016 was 23,886 students, and approximately 76 percent of these students were Idaho residents. More than 90 percent of Boise State's first-year students come directly from high school. In the 2015–16 school year, Boise State awarded diplomas to 3,916 distinct graduates, including 18 doctorates, 10 education specialists, 670 master's and 2,998 bachelor's degrees. The university is classified among "R2: Doctoral Universities – High research spending and doctorate production".
Boise State University (BSU) is a public research university in Boise, Idaho, United States. Founded in 1932 by the Episcopal Church, it became an independent junior college in 1934 and has been awarding baccalaureate and master's degrees since 1965. It became a public institution in 1969. Boise State offers more than 100 graduate programs, including a variety of MBA programs and the MAcc program in the College of Business and Economics; master's and PhD programs in the Colleges of Engineering, Arts & Sciences, and Education; MPA program in the School of Public Service; and the MPH program in the College of Health Sciences. It is classified among "R2: Doctoral Universities – High research activity".
Public utility
Q1951366 EXACT TITLE 1.000
QID OVERLAP: Q1951366 in land_use_planning (tier:branch) and energy_utilities (tier:evergreen). | SHARED TOKENS (33): "cannot", "clean", "commission", "control", "costs", "different", "entity", "federal", "infrastructure", "large", "lines", "local", "maintains", "market", "multiple", "natural", "operates", "organization", "pipelines", "produce".... | EXACT TITLE in energy_utilities: "Public utility".
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y, or natural gas pipelines, have natural monopoly characteristics. A monopoly can occur when it finds the best way to minimize its costs through economies of scale to the point where other companies cannot compete with it. If the infrastructure already exists in a given area, minimal benefit is gained through competing. In other words, these industries are characterized by economies of scale in production. Though it can be mentioned that these natural monopolies are handled or watched by a public utilities commission, or an institution that represents the government. There are many different types of public utilities. Some, especially large companies, offer multiple products, such as electricity and natural gas. Other companies specialize in a specific product, such as water. Modern public utilities may also be partially (or completely) sourced from clean and renewable energy in order to produce sustainable electricity. Of these, wind turbines and solar panels are those used most frequently. Whether broadband internet access should be a public utility is a question that was being discussed with the rise of internet usage. This is a question that was being asked due to the telephone service being considered a public utility. Since arguably broadband internet access has taken over telephone service, perhaps it should be a public utility. The Federal Communications Commission (FCC) in the United States in 2015 made its stance on this issue clear.
fer multiple products, such as electricity and natural gas. Other companies specialize in a specific product, such as water. Modern public utilities may also be partially (or completely) sourced from clean and renewable energy in order to produce sustainable electricity. Of these, wind turbines and solar panels are those used most frequently. Whether broadband internet access should be a public utility is a question that was being discussed with the rise of internet usage. This is a question that was being asked due to the telephone service being considered a public utility. Since arguably broadband internet access has taken over telephone service, perhaps it should be a public utility. The Federal Communications Commission (FCC) in the United States in 2015 made its stance on this issue clear.
ompeting. In other words, these industries are characterized by economies of scale in production. Though it can be mentioned that these natural monopolies are handled or watched by a public utilities commission, or an institution that represents the government. There are many different types of public utilities. Some, especially large companies, offer multiple products, such as electricity and natural gas. Other companies specialize in a specific product, such as water. Modern public utilities may also be partially (or completely) sourced from clean and renewable energy in order to produce sustainable electricity. Of these, wind turbines and solar panels are those used most frequently. Whether broadband internet access should be a public utility is a question that was being discussed with the rise of internet usage. This is a question that was being asked due to the telephone service being considered a public utility. Since arguably broadband internet access has taken over telephone service, perhaps it should be a public utility. The Federal Communications Commission (FCC) in the United States in 2015 made its stance on this issue clear.
Clean Water Act
Q2978742 EXACT TITLE 1.000
QID OVERLAP: Q2978742 in land_use_planning (tier:evergreen) and energy_utilities (tier:evergreen). | SHARED TOKENS (34): "act", "address", "addressing", "administered", "changes", "clean", "conservation", "control", "coordination", "directly", "engineers", "environmental", "federal", "form", "funding", "governing", "governments", "groundwater", "improvement", "law".... | EXACT TITLE in land_use_planning: "Clean Water Act". | EXACT TITLE in energy_utilities: "Clean Water Act".
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The Clean Water Act (CWA) is the primary federal law in the United States governing water pollution. Its objective is to restore and maintain the chemical, physical, and biological integrity of the nation's waters; recognizing the primary responsibilities of the states in addressing pollution and providing assistance to states to do so, including funding for publicly owned treatment works for the improvement of wastewater treatment; and maintaining the integrity of wetlands. The Clean Water Act was one of the first and most influential modern environmental laws in the United States. Its laws and regulations are primarily administered by the U.S. Environmental Protection Agency (EPA) in coordination with state governments, though some of its provisions, such as those involving filling or dredging, are administered by the U.S. Army Corps of Engineers. Its implementing regulations are codified at 40 C.F.R. Subchapters D, N, and O (Parts 100–140, 401–471, and 501–503). Technically, the name of the law is the Federal Water Pollution Control Act. The first FWPCA was enacted in 1948, but took on its modern form when completely rewritten in 1972 in an act entitled the Federal Water Pollution Control Act Amendments of 1972. Major changes have subsequently been introduced via amendatory legislation including the Clean Water Act of 1977 and the Water Quality Act (WQA) of 1987. The Clean Water Act does not directly address groundwater contamination.
d providing assistance to states to do so, including funding for publicly owned treatment works for the improvement of wastewater treatment; and maintaining the integrity of wetlands. The Clean Water Act was one of the first and most influential modern environmental laws in the United States. Its laws and regulations are primarily administered by the U.S. Environmental Protection Agency (EPA) in coordination with state governments, though some of its provisions, such as those involving filling or dredging, are administered by the U.S. Army Corps of Engineers. Its implementing regulations are codified at 40 C.F.R. Subchapters D, N, and O (Parts 100–140, 401–471, and 501–503). Technically, the name of the law is the Federal Water Pollution Control Act. The first FWPCA was enacted in 1948, but took on its modern form when completely rewritten in 1972 in an act entitled the Federal Water Pollution Control Act Amendments of 1972. Major changes have subsequently been introduced via amendatory legislation including the Clean Water Act of 1977 and the Water Quality Act (WQA) of 1987. The Clean Water Act does not directly address groundwater contamination.
ngineers. Its implementing regulations are codified at 40 C.F.R. Subchapters D, N, and O (Parts 100–140, 401–471, and 501–503). Technically, the name of the law is the Federal Water Pollution Control Act. The first FWPCA was enacted in 1948, but took on its modern form when completely rewritten in 1972 in an act entitled the Federal Water Pollution Control Act Amendments of 1972. Major changes have subsequently been introduced via amendatory legislation including the Clean Water Act of 1977 and the Water Quality Act (WQA) of 1987. The Clean Water Act does not directly address groundwater contamination.
Building code
Q2333573 EXACT TITLE 1.000
QID OVERLAP: Q2333573 in land_use_planning (tier:evergreen) and energy_utilities (tier:branch). | SHARED TOKENS (48): "adopted", "applied", "apply", "appropriate", "approved", "authority", "becomes", "building", "buildings", "code", "codes", "compliance", "construction", "control", "departments", "design", "developers", "district", "electrical", "engineers".... | EXACT TITLE in land_use_planning: "Building code".
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velopers, subcontractors, manufacturers of building products and materials, insurance companies, facility managers, tenants, and others. Codes regulate the design and construction of structures where adopted into law. Examples of building codes began in ancient times. In the USA the main codes are the International Building Code or International Residential Code [IBC/IRC], electrical codes and plumbing, mechanical codes. Fifty states and the District of Columbia have adopted the I-Codes at the state or jurisdictional level. In Canada, national model codes are published by the National Research Council of Canada. In the United Kingdom, compliance with Building Regulations is monitored by building control bodies, either Approved Inspectors or Local Authority Building Control departments.
the USA the main codes are the International Building Code or International Residential Code [IBC/IRC], electrical codes and plumbing, mechanical codes. Fifty states and the District of Columbia have adopted the I-Codes at the state or jurisdictional level. In Canada, national model codes are published by the National Research Council of Canada. In the United Kingdom, compliance with Building Regulations is monitored by building control bodies, either Approved Inspectors or Local Authority Building Control departments.
Types The practice of developing, approving, and enforcing building codes varies considerably among nations. In some countries building codes are developed by the government agencies or quasi-governmental standards organizations and then enforced across the country by the central government. Such codes are known as the national building codes (in a sense they enjoy a mandatory nationwide application). In other countries, where the power of regulating construction and fire safety is vested in local authorities, a system of model building codes is used. Model building codes have no legal status unless adopted or adapted by an authority having jurisdiction. The developers of model codes urge public authorities to reference model codes in their laws, ordinances, regulations, and administrative orders. When referenced in any of these legal instruments, a particular model code becomes law. This practice is known as 'adoption by reference'. When an adopting authority decides to delete, add, or revise any portions of the model code adopted, it is usually required by the model code developer to follow a formal adoption procedure in which those modifications can be documented for legal purposes. There are instances when some local jurisdictions choose to develop their own building codes. At some point in time all major cities in the United States had their own building codes. However, due to ever increasing complexity and cost of developing building regulations, virtually all municipalities in the country have chosen to adopt model codes instead. For example, in 2008 New York City abandoned its proprietary 1968 New York City Building Code in favor of a customized version of the International Building Code. The City of Chicago remains the only municipality in America that continues to use a building code the city developed on its own as part of the Municipal Code of Chicago. In Europe, the Eurocode: Basis of structural design, is a pan-European building code that has superseded the older national building codes. Each country now has National Annexes to localize the contents of the Eurocodes. Similarly, in India, each municipality and urban development authority has its own building code, which is mandatory for all construction within their jurisdiction.
Canal
Q12284 EXACT TITLE 1.000
QID OVERLAP: Q12284 in land_use_planning (tier:evergreen) and energy_utilities (tier:evergreen). | SHARED TOKENS (25): "building", "built", "canal", "canals", "cases", "control", "create", "current", "discharges", "drainage", "flood", "generally", "increase", "irrigation", "management", "natural", "needed", "pressure", "requiring", "resources".... | EXACT TITLE in land_use_planning: "Canal". | EXACT TITLE in energy_utilities: "Canal".
buildingbuiltcanalcanalscasescontrolcreatecurrentdischargesdrainagefloodgenerallyincreaseirrigationmanagementnaturalneededpressurerequiringresourcesriversourcesupplyvalleywater
els, often just called levels. A canal can be called a navigation canal when it parallels a natural river and shares part of the latter's discharges and drainage basin, and leverages its resources by building dams and locks to increase and lengthen its stretches of slack water levels while staying in its valley. A canal can cut across a drainage divide atop a ridge, generally requiring an external water source above the highest elevation. The best-known example of such a canal is the Panama Canal. Many canals have been built at elevations, above valleys and other waterways. Canals with sources of water at a higher level can deliver water to a destination such as a city where water is needed.
Human made streams A canal can be created where no stream presently exists. Either the body of the canal is dug or the sides of the canal are created by making dykes or levees by piling dirt, stone, concrete or other building materials. The finished shape of the canal as seen in cross section is known as the canal prism. The water for the canal must be provided from an external source, like streams or reservoirs. Where the new waterway must change elevation engineering works like locks, lifts or elevators are constructed to raise and lower vessels. Examples include canals that connect valleys over a higher body of land, like Canal du Midi, Canal de Briare and the Panama Canal. A canal can be constructed by dredging a channel in the bottom of an existing lake. When the channel is complete, the lake is drained and the channel becomes a new canal, serving both drainage of the surrounding polder and providing transport there. Examples include the Lage Vaart. One can also build two parallel dikes in an existing lake, forming the new canal in between, and then drain the remaining parts of the lake. The eastern and central parts of the North Sea Canal were constructed in this way.
In the Middle Ages, water transport was several times cheaper and faster than transport overland. Overland transport by animal drawn conveyances was used around settled areas, but unimproved roads required pack animal trains, usually of mules to carry any degree of mass, and while a mule could carry an eighth ton, it also needed teamsters to tend it and one man could only tend perhaps five mules, meaning overland bulk transport was also expensive, as men expect compensation in the form of wages, room and board. This was because long-haul roads were unpaved, more often than not too narrow for carts, much less wagons, and in poor condition, wending their way through forests, marshy or muddy quagmires as often as unimproved but dry footing. In that era, as today, greater cargoes, especially bulk goods and raw materials, could be transported by ship far more economically than by land; in the pre-railroad days of the industrial revolution, water transport was the gold standard of fast transportation. The first artificial canal in Western Europe was the Fossa Carolina built at the end of the 8th century under personal supervision of Charlemagne. In Britain, the Glastonbury Canal is believed to be the first post-Roman canal and was built in the middle of the 10th century to link the River Brue at Northover with Glastonbury Abbey, a distance of about 1.75 kilometres (1,900 yd). Its initial purpose is believed to be the transport of building stone for the abbey, but later it was used for delivering produce, including grain, wine and fish, from the abbey's outlying properties. It remained in use until at least the 14th century, but possibly as late as the mid-16th century. More lasting and of more economic impact were canals like the Naviglio Grande built between 1127 and 1257 to connect Milan with the river Ticino. The Naviglio Grande is the most important of the lombard "navigli" and the oldest functioning canal in Europe. Later, canals were built in the Netherlands and Flanders to drain the polders and assist transportation of goods and people. Canal building was revived in this age because of commercial expansion from the 12th century. River navigations were improved progressively by the use of single, or flash locks. Taking boats through these used large amounts of water leading to conflicts with watermill owners and to correct this, the pound or chamber lock first appeared, in the 10th century in China and in Europe in 1373 in Vreeswijk, Netherlands. Another important development was the mitre gate, which was, it is presumed, introduced in Italy by Bertola da Novate in the 16th century.
Civil engineering
Q77590 EXACT TITLE 1.000
QID OVERLAP: Q77590 in land_use_planning (tier:evergreen) and energy_utilities (tier:branch). | SHARED TOKENS (25): "agencies", "buildings", "built", "canals", "civil", "components", "construction", "departments", "design", "distinguish", "engineering", "firms", "infrastructure", "locally", "municipal", "national", "physical", "pipelines", "private", "professional".... | EXACT TITLE in land_use_planning: "Civil engineering".
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defined to distinguish non-military engineering from military engineering. Civil engineering can take place in the public sector from municipal public works departments through to national government agencies, and in the private sector from locally based firms to Fortune Global 500 companies. History As a discipline Civil engineering is the application of physical and scientific principles for solving the problems of society, and its history is intricately linked to advances in the understanding of physics and mathematics throughout history. Because civil engineering is a broad profession, including several specialized sub-disciplines, its history is linked to knowledge of structures, materials science, geography, geology, soils, hydrology, environmental science, mechanics, project management, and other fields. Throughout ancient and medieval history most architectural design and construction was carried out by artisans, such as stonemasons and carpenters, rising to the role of master builder. Knowledge was retained in craft guilds and seldom supplanted by advances. Structures, roads, and infrastructure that existed were repetitive, and increases in scale were incremental. One of the earliest examples of a scientific approach to physical and mathematical problems applicable to civil engineering is the work of Archimedes in the 3rd century BC, including Archimedes' principle, which underpins our understanding of buoyancy, and practical solutions such as Archimedes' screw.
nstruction, and maintenance of the physical and naturally built environment, including public works such as roads, bridges, canals, dams, airports, sewage systems, pipelines, structural components of buildings, and railways. Civil engineering is traditionally broken into a number of sub-disciplines. It is considered the second-oldest engineering discipline after military engineering, and it is defined to distinguish non-military engineering from military engineering.
Site development, also known as site planning, is focused on the planning and development potential of a site as well as addressing possible impacts from permitting issues and environmental challenges. Structural engineering Structural engineering is concerned with the structural design and structural analysis of buildings, bridges, towers, flyovers (overpasses), tunnels, off shore structures like oil and gas fields in the sea, aerostructure and other structures. This involves identifying the loads which act upon a structure and the forces and stresses which arise within that structure due to those loads, and then designing the structure to successfully support and resist those loads. The loads can be self weight of the structures, other dead load, live loads, moving (wheel) load, wind load, earthquake load, load from temperature change etc. The structural engineer must design structures to be safe for their users and to successfully fulfill the function they are designed for (to be serviceable). Due to the nature of some loading conditions, sub-disciplines within structural engineering have emerged, including wind engineering and earthquake engineering. Design considerations will include strength, stiffness, and stability of the structure when subjected to loads which may be static, such as furniture or self-weight, or dynamic, such as wind, seismic, crowd or vehicle loads, or transitory, such as temporary construction loads or impact.
College of Western Idaho
Q5146875 EXACT TITLE 1.000
QID OVERLAP: Q5146875 in land_use_planning (tier:evergreen) and energy_utilities (tier:evergreen). | SHARED TOKENS (32): "ada", "board", "boise", "canyon", "classes", "college", "community", "counties", "cwi", "development", "eastern", "education", "governed", "idaho", "large", "nampa", "population", "programs", "public", "reported".... | EXACT TITLE in land_use_planning: "College of Western Idaho". | EXACT TITLE in energy_utilities: "College of Western Idaho".
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ommunity colleges along with the College of Eastern Idaho, College of Southern Idaho and North Idaho College, in Idaho and is governed by a five-member board of trustees elected at large by voters in Ada and Canyon counties. CWI offers over 120 programs in the areas of Academic Transfer, Dual Credit, Career and Technical Education, Workforce Development, and Adult Education. In fall of 2023, CWI served 21,359 credit students and 14,951 noncredit students. CWI reported the gender of their students to be 55% female and 45% male.
CWI served 21,359 credit students and 14,951 noncredit students. CWI reported the gender of their students to be 55% female and 45% male. Idaho residents comprised 98% of CWI's student population and Ada County residents were 49%, while 28% were Canyon County residents. History Prior to the creation of CWI, Boise was one of the largest metropolitan statistical areas in the United States without a community college. CWI was created on May 22, 2007, when voters of Canyon and Ada counties passed a measure to allow the formation of the new community college district. In June 2007, the Albertson Foundation announced it was donating $10 million to help found the college. In July 2007, the Idaho State Board of Education selected an initial five-member board of trustees. The following month Boise State University faculty member Dennis Griffin was named to a two-year term as the college's first president and CWI began offering academic classes on January 20, 2009, with an enrollment of over 1,100 students. In the summer of 2009 the professional-technical programs from Boise State University's Selland College of Applied Technology transitioned to CWI. By the fall 2009 semester, CWI enrollment had expanded to over 3,600 students. In January 2010, CWI applied for accreditation from the Northwest Commission on Colleges and Universities (NWCCU). NWCCU granted candidacy status at the associate degree level in 2012 and initial accreditation in 2016. President Griffin retired in August 2009 and was succeeded by Bert Glandon. After serving as president for 12 years, Glandon retired from CWI on May 15, 2021. The college's board of trustees named Denise Aberle-Cannata the interim president. CWI Board of Trustees extended an offer to Gordon Jones on Dec. 9, 2021 to be the next president at College of Western Idaho. Gordon Jones accepted the position of President at CWI and began his tenure as the third president in CWI's history on Jan.
History Prior to the creation of CWI, Boise was one of the largest metropolitan statistical areas in the United States without a community college. CWI was created on May 22, 2007, when voters of Canyon and Ada counties passed a measure to allow the formation of the new community college district. In June 2007, the Albertson Foundation announced it was donating $10 million to help found the college. In July 2007, the Idaho State Board of Education selected an initial five-member board of trustees. The following month Boise State University faculty member Dennis Griffin was named to a two-year term as the college's first president and CWI began offering academic classes on January 20, 2009, with an enrollment of over 1,100 students. In the summer of 2009 the professional-technical programs from Boise State University's Selland College of Applied Technology transitioned to CWI. By the fall 2009 semester, CWI enrollment had expanded to over 3,600 students. In January 2010, CWI applied for accreditation from the Northwest Commission on Colleges and Universities (NWCCU). NWCCU granted candidacy status at the associate degree level in 2012 and initial accreditation in 2016. President Griffin retired in August 2009 and was succeeded by Bert Glandon. After serving as president for 12 years, Glandon retired from CWI on May 15, 2021. The college's board of trustees named Denise Aberle-Cannata the interim president. CWI Board of Trustees extended an offer to Gordon Jones on Dec. 9, 2021 to be the next president at College of Western Idaho. Gordon Jones accepted the position of President at CWI and began his tenure as the third president in CWI's history on Jan.
Treasure Valley
Q7836726 EXACT TITLE 0.980
QID OVERLAP: Q7836726 in land_use_planning (tier:evergreen) and energy_utilities (tier:evergreen). | SHARED TOKENS (14): "agricultural", "association", "boise", "eastern", "idaho", "land", "local", "metropolitan", "resources", "river", "rural", "treasure", "valley", "western". | EXACT TITLE in land_use_planning: "Treasure Valley". | EXACT TITLE in energy_utilities: "Treasure Valley".
agriculturalassociationboiseeasternidaholandlocalmetropolitanresourcesriverruraltreasurevalleywestern
, coined the name "Treasure Valley" in 1959 to reflect the treasure chest of resources and opportunities that the region offered. The valley has a very diverse terrain, from sage flatlands, to mesas, agricultural areas, and urbanized areas. As the Boise Metropolitan Area grows, more and more undeveloped and agricultural land is being urbanized. History Settling the region The tribes that roamed the area, specifically, were the Northern Paiute and Shoshone. In 1834, Thomas McKay built the original Fort Boise, in the area near present-day Parma, which was run for a time by Francois Payette. It later was moved because of flooding troubles and was abandoned in 1854. The Oregon Trail runs through the Treasure Valley. The valley was settled for the most part by ranchers and farmers, initially to supply the gold and silver mining communities in the higher elevations nearby: Idaho City in the Boise Basin and Silver City in the Owyhees. A new Fort Boise was constructed by the U.S. Army in 1863 in present-day Boise, from which the city grew.
ern Oregon to Boise, and is the most populated area in Idaho. Historically, the valley had been known as the Lower Snake River Valley or the Boise River Valley. Pete Olesen, president of the valley's association of local Chambers of Commerce, coined the name "Treasure Valley" in 1959 to reflect the treasure chest of resources and opportunities that the region offered. The valley has a very diverse terrain, from sage flatlands, to mesas, agricultural areas, and urbanized areas.
The Treasure Valley is a valley in the western United States, primarily in southwestern Idaho, where the Payette, Boise, Weiser, Malheur, and Owyhee rivers drain into the Snake River. It includes all the lowland areas from Vale in rural eastern Oregon to Boise, and is the most populated area in Idaho. Historically, the valley had been known as the Lower Snake River Valley or the Boise River Valley. Pete Olesen, president of the valley's association of local Chambers of Commerce, coined the name "Treasure Valley" in 1959 to reflect the treasure chest of resources and opportunities that the region offered. The valley has a very diverse terrain, from sage flatlands, to mesas, agricultural areas, and urbanized areas.
Wastewater
Q336191 EXACT TITLE 0.960
QID OVERLAP: Q336191 in land_use_planning (tier:evergreen) and energy_utilities (tier:evergreen). | SHARED TOKENS (13): "activities", "agricultural", "another", "applications", "commercial", "community", "definition", "industrial", "municipal", "processes", "sewer", "wastewater", "water". | EXACT TITLE in land_use_planning: "Wastewater". | EXACT TITLE in energy_utilities: "Wastewater".
activitiesagriculturalanotherapplicationscommercialcommunitydefinitionindustrialmunicipalprocessessewerwastewaterwater
w water, or saline water in a variety of deliberate applications or processes. Another definition of wastewater is "Used water from any combination of domestic, industrial, commercial or agricultural activities, surface runoff / storm water, and any sewer infiltration or sewer inflow".
Domestic wastewater, which encompasses sewage produced by communities and is commonly subdivided into greywater and blackwater. Industrial wastewater: waterborne waste generated from a variety of industrial processes, such as manufacturing operations, mineral extraction, power generation, or water and wastewater treatment. Cooling water, is released with potential thermal pollution after use to condense steam or reduce machinery temperatures by conduction or evaporation. Leachate: precipitation containing pollutants dissolved while percolating through ores, raw materials, products, or solid waste. Return flow: the flow of water carrying suspended soil, pesticide residues, or dissolved minerals and nutrients from irrigated cropland. Surface runoff: the flow of water occurring on the ground surface when excess rainwater, stormwater, meltwater, or other sources, can no longer sufficiently rapidly infiltrate the soil. Urban runoff, including water used for outdoor cleaning activity and landscape irrigation in densely populated areas created by urbanization. Agricultural wastewater: animal husbandry wastewater generated from confined animal operations. Treatment Wastewater treatment refers to processes used to remove contaminants from wastewater. The treated effluent is typically discharged to a receiving water body with the aim of limiting adverse environmental impacts. Sewage is usually treated at sewage treatment plants. Industrial wastewater may be treated at facilities designed for industrial processes or, in some cases, at municipal sewage treatment plants. When the latter occurs, industries generally perform on-site pretreatment before discharge to the municipal system. Other specialized treatment plants exist for agricultural wastewater and leachate. Treatment processes commonly include phase separation, biological and chemical transformation steps, and polishing to improve effluent quality. Sludge is the principal by-product generated during treatment and is further processed at the same facility or at separate sludge treatment plants.
Wastewater treatment refers to processes used to remove contaminants from wastewater. The treated effluent is typically discharged to a receiving water body with the aim of limiting adverse environmental impacts. Sewage is usually treated at sewage treatment plants. Industrial wastewater may be treated at facilities designed for industrial processes or, in some cases, at municipal sewage treatment plants. When the latter occurs, industries generally perform on-site pretreatment before discharge to the municipal system. Other specialized treatment plants exist for agricultural wastewater and leachate. Treatment processes commonly include phase separation, biological and chemical transformation steps, and polishing to improve effluent quality. Sludge is the principal by-product generated during treatment and is further processed at the same facility or at separate sludge treatment plants.
W
Q7973730 EXACT TITLE 0.960
QID OVERLAP: Q7973730 in land_use_planning (tier:evergreen) and energy_utilities (tier:evergreen). | SHARED TOKENS (13): "different", "generally", "ground", "groundwater", "irrigation", "law", "legal", "physical", "right", "river", "source", "systems", "water". | EXACT TITLE in land_use_planning: "Water right". | EXACT TITLE in energy_utilities: "Water right".
differentgenerallygroundgroundwaterirrigationlawlegalphysicalrightriversourcesystemswater
rid areas where irrigation is practiced, such systems are often the source of conflict, both legal and physical. Some systems treat surface water and ground water in the same manner, while others use different principles for each. Types Water rights requires consideration of the context and origin of the right being discussed, or asserted. Traditionally, water rights refers to the utilization of water as an element supporting basic human needs like drinking or irrigation. Water rights could also include the physical occupancy of waterways for purposes of travel, commerce and recreational pursuits. The legal principles and doctrines that form the basis of each type of water rights are not interchangeable and vary according to local and national laws.
In water law, water right is the right of a user to use water from a water source, e.g., a river, stream, pond or source of groundwater. In areas with plentiful water and few users, such systems are generally not complicated or contentious. In other areas, especially arid areas where irrigation is practiced, such systems are often the source of conflict, both legal and physical.
History In ancient Rome, the law was that people could obtain temporary usufructuary rights for running water. These rights were independent of land ownership, and lasted as long as use continued. Under English common law, all tidal waters were held by the Crown and all freshwater streams were included with title to the lands, with full accompanying rights. However, under the riparian doctrine, landowners had the right to receive water undiminished by upstream landowners. Over time, rights evolved from being strictly land-based to also include use-based, allowing non-landowners to hold enforceable rights to receive clean water. A reasonable use rule evolved in some countries. Finland In Finland, waterbodies are generally privately owned, but Finland also applies the Roman law principle of aqua profluens (flowing water), according to which the freely flowing water in waterbodies cannot be owned or possessed. This means that the owners of waterbodies cannot prohibit diversion of water for agricultural, industrial, municipal, or domestic use according to the provisions of the Finnish Water Law. A separate act regulates provision of water.
Boise River
Q891080 EXACT TITLE 0.920
QID OVERLAP: Q891080 in land_use_planning (tier:evergreen) and energy_utilities (tier:evergreen). | SHARED TOKENS (11): "agricultural", "approximately", "boise", "drains", "idaho", "lands", "river", "square", "urban", "watershed", "western". | EXACT TITLE in land_use_planning: "Boise River". | EXACT TITLE in energy_utilities: "Boise River".
agriculturalapproximatelyboisedrainsidaholandsriversquareurbanwatershedwestern
ise, as well as part of the western Snake River Plain. The watershed encompasses approximately 4,100 square miles (11,000 km2) of highly diverse habitats, including alpine canyons, forest, rangeland, agricultural lands, and urban areas. Description The Boise River rises in three separate forks in the Sawtooth Range at elevations exceeding 10,000 feet (3,050 m), and is formed by the confluence of its North and Middle forks. The North Fork, 50 miles (80 km) long, rises in the Sawtooth Wilderness Area, along the Boise–Elmore county line, 60 miles (100 km) northeast of Boise. It flows generally southwest through the remote mountains in the Boise National Forest. The Middle Fork, approximately 52 miles (84 km) in length, rises within 12 miles (19 km) of the North Fork in the southern Sawtooth Wilderness Area in northeastern Elmore County. It flows west-southwest near the town of Atlanta, joining the North Fork to form the Boise River, approximately 15 miles (24 km) southeast of Idaho City.
History The river was called "Reed's River" in the early 19th century, named after Pacific Fur Company employee John Reed, who explored parts of the river throughout 1813 and 1814. The river is diverted to canals for irrigation on the plain west of what is now Boise. The dams that form the mountain reservoirs were constructed as part of the Bureau of Reclamation's "Boise Project" to provide agricultural irrigation, hydroelectricity, drinking water, and flood control to Boise and the Treasure Valley. The major projects' initial completion dates were: 1909 – Boise River Diversion Dam & New York Canal 1915 – Arrowrock Dam 1950 – Anderson Ranch Dam - (S. Fork) 1955 – Lucky Peak Dam - (U.S. Army Corps of Engineers) The Boise River was proposed for 50 years for a dam at Twin Springs, culminating in a 1966 Project Travois proposal, which would have used nuclear explosives to either create large amounts of rockfill aggregate for dam construction, or to induce a landslide that would have much the same effect. Project Travois was a component of Project Plowshare.
Recreation The river is a popular destination for floating, specifically on the Boise greenbelt. Tubers and floaters launch at Barber Park and land at Ann Morrison Park, between major irrigation diversion dams. Several minor diversion weirs are passed as well as several bridges on the 6-mile (10 km) trip. Water skiing is popular above the dam at the Lucky Peak Reservoir. On the lower (warmwater) course of the river, low summer flows and poorer water quality from agricultural runoff limit fishery production. This section of river supports a fair fishery for largemouth bass, smallmouth bass, and channel catfish. Upstream from Star, the river is a coldwater stream and supports a greater variety of fish. The most prevalent species on this section is mountain whitefish, as well as hatchery-reared rainbow trout, wild rainbow trout, and brown trout. Upstream from Lucky Peak and Arrowrock reservoirs, the river and its tributaries contain excellent populations of wild rainbow trout, mountain whitefish, and bull trout.
Boise metropolitan area
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QID OVERLAP: Q4938481 in land_use_planning (tier:branch) and energy_utilities (tier:evergreen). | SHARED TOKENS (16): "ada", "boise", "canyon", "counties", "home", "idaho", "largest", "meridian", "metropolitan", "nampa", "nearly", "percent", "population", "treasure", "valley", "wider".
adaboisecanyoncountieshomeidaholargestmeridianmetropolitannampanearlypercentpopulationtreasurevalleywider
The Boise, Idaho Metropolitan Statistical Area (MSA) (commonly known as the Boise Metropolitan Area or the Treasure Valley) is an area that encompasses Ada, Boise, Canyon, Gem, and Owyhee counties in southwestern Idaho, anchored by the cities of Boise and Nampa. It is the main component of the wider Boise–Mountain Home–Ontario, ID–OR Combined Statistical Area, which adds Elmore and Payette counties in Idaho and Malheur County, Oregon. It is the state's largest officially designated metropolitan area and includes Idaho's three largest cities: Boise, Nampa, and Meridian.
Four-year colleges and universities Northwest Nazarene University (NNU), Nampa, Idaho The College of Idaho (C of I), Caldwell, Idaho University of Idaho (U of I), Boise; Extension Campus Idaho State University (ISU), Meridian, Idaho; Extension Campus Community colleges and trade schools College of Western Idaho, Nampa, Idaho (CWI) Nampa; Main Campus, Aspen Classroom Bldg., Canyon County Extension Boise; Ada County Campus Treasure Valley Community College, Caldwell, Idaho (TVCC) Ontario, Oregon; Main Campus Caldwell, Idaho; Caldwell Campus Northwest Lineman College (NLC), Kuna, Idaho Heavy Equipment Operator School of Idaho, Boise Carrington College, Boise Broadview University, Meridian, Idaho University of Phoenix Meridian; Main Campus Boise Bible College, Boise
tistical Area, which adds Elmore and Payette counties in Idaho and Malheur County, Oregon. It is the state's largest officially designated metropolitan area and includes Idaho's three largest cities: Boise, Nampa, and Meridian. Nearly 40 percent of Idaho's total population lives in the area. As of the 2021 estimate, the Boise–Nampa, Idaho Metropolitan Statistical Area (MSA) had a population of 795,268, while the larger Boise City–Mountain Home–Ontario, ID–OR Combined Statistical Area (CSA) had a population of 850,341. The metro area is currently the third largest in the U.S.
I
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QID OVERLAP: Q6073798 in land_use_planning (tier:evergreen) and energy_utilities (tier:evergreen). | SHARED TOKENS (17): "authority", "boundaries", "corporation", "district", "districts", "entity", "irrigation", "landowners", "lands", "large", "local", "power", "projects", "public", "set", "subdivision", "water".
authorityboundariescorporationdistrictdistrictsentityirrigationlandownerslandslargelocalpowerprojectspublicsetsubdivisionwater
division of the State government, with definite geographic boundaries, organized, and having taxing power to obtain and distribute water for irrigation of lands within the district; created under the authority of a State legislature with the consent of a designated fraction of the landowners or citizens. It is a special-purpose district created by statute in order to develop large irrigation projects. These districts have the power to tax, borrow, and condemn.
water for irrigation of lands within the district; created under the authority of a State legislature with the consent of a designated fraction of the landowners or citizens. It is a special-purpose district created by statute in order to develop large irrigation projects. These districts have the power to tax, borrow, and condemn. Sample districts See also Deficit irrigation Environmental effects of irrigation Huerta Irrigation methods Irrigation District Act of 1916 (Smith Act) Irrigation Districts and Farm Loans Act Water district
igation projects. These districts have the power to tax, borrow, and condemn. Sample districts See also Deficit irrigation Environmental effects of irrigation Huerta Irrigation methods Irrigation District Act of 1916 (Smith Act) Irrigation Districts and Farm Loans Act Water district References External links Federal lands included in state irrigation districts "The Nevada Irrigation District Act"
Deer Flat Upper Embankment
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QID OVERLAP: Q5250747 in land_use_planning (tier:branch) and energy_utilities (tier:branch). | SHARED TOKENS (39): "activity", "among", "approximately", "association", "boise", "bureau", "canyon", "capacity", "center", "conservation", "contains", "counties", "creates", "directly", "edge", "federal", "feet", "formation", "idaho", "largest"....
activityamongapproximatelyassociationboisebureaucanyoncapacitycenterconservationcontainscountiescreatesdirectlyedgefederalfeetformationidaholargestlocalnampanationalofficeprojectprojectsprovidereclamationreservoirriver+9
Deer Flat Middle Dike (ID #ID00277), completed 1911, 18 feet (5.5 m) high, 1,262 feet (385 m) long Deer Flat Lower Dike (ID #ID00278), completed 1908, 48 feet (15 m) high, 7,270 feet (2,220 m) long Deer Flat East Dike (ID #ID82902), completed 1911, 18 feet (5.5 m) high, 3,806 feet (1,160 m) long The reservoir it creates, Lake Lowell, has a normal surface area of 16 square miles (41 km2), and a maximum capacity of 169,000 acre-feet (208,000,000 m3). Its surface elevation is approximately 2,520 feet (770 m) above sea level. The Boise Project was among the first undertaken by the Reclamation Service after its formation in 1902. Shortly before leaving office, President Theodore Roosevelt created a national bird refuge at Deer Flat Reservoir, now Lake Lowell, with an executive order on February 25, 1909. The refuge was one of 17 federal reclamation projects referenced in the order, each of which used manmade aquifers to provide safe havens for migratory birds. The effort to include the Canyon County site was spearheaded by James H. Lowell, the president of the local Payette-Boise Water Users Association. The "globally important" Deer Flat National Wildlife Refuge for migratory fowl and other wildlife consists of two sections which contains open water, edge wetlands, grasslands and riparian and forest habitats. The largest portion of the refuge consists of Lake Lowell and its environs. The second portion comprises the Snake River islands located in non-contiguous localities along the river in Canyon, Owyhee, Payette, and Washington counties (Idaho) and Malheur and Baker counties (Oregon).
w U.S. Bureau of Reclamation), with a height of 74 feet (23 m) and a crest length of 4,165 feet (1.27 km). The Upper Embankment is the largest of a set of four dikes here impounding the water of the Boise River in offstream storage. The other dams are: Deer Flat Middle Dike (ID #ID00277), completed 1911, 18 feet (5.5 m) high, 1,262 feet (385 m) long Deer Flat Lower Dike (ID #ID00278), completed 1908, 48 feet (15 m) high, 7,270 feet (2,220 m) long Deer Flat East Dike (ID #ID82902), completed 1911, 18 feet (5.5 m) high, 3,806 feet (1,160 m) long The reservoir it creates, Lake Lowell, has a normal surface area of 16 square miles (41 km2), and a maximum capacity of 169,000 acre-feet (208,000,000 m3). Its surface elevation is approximately 2,520 feet (770 m) above sea level. The Boise Project was among the first undertaken by the Reclamation Service after its formation in 1902. Shortly before leaving office, President Theodore Roosevelt created a national bird refuge at Deer Flat Reservoir, now Lake Lowell, with an executive order on February 25, 1909. The refuge was one of 17 federal reclamation projects referenced in the order, each of which used manmade aquifers to provide safe havens for migratory birds. The effort to include the Canyon County site was spearheaded by James H. Lowell, the president of the local Payette-Boise Water Users Association. The "globally important" Deer Flat National Wildlife Refuge for migratory fowl and other wildlife consists of two sections which contains open water, edge wetlands, grasslands and riparian and forest habitats. The largest portion of the refuge consists of Lake Lowell and its environs. The second portion comprises the Snake River islands located in non-contiguous localities along the river in Canyon, Owyhee, Payette, and Washington counties (Idaho) and Malheur and Baker counties (Oregon).
Mergers and acquisitions
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QID OVERLAP: Q731112 in land_use_planning (tier:branch) and energy_utilities (tier:branch). | SHARED TOKENS (43): "acquisition", "acquisitions", "act", "activity", "another", "assets", "business", "capital", "central", "commission", "competitive", "consolidation", "control", "corporate", "create", "department", "direct", "entity", "federal", "governed"....
acquisitionacquisitionsactactivityanotherassetsbusinesscapitalcentralcommissioncompetitiveconsolidationcontrolcorporatecreatedepartmentdirectentityfederalgovernedlawlegalmanagementmarketoperatingoperationsorganizationownershippositionpotential+13
In business, mergers and acquisitions (M&A) are transactions where the ownership of a company, business organization, or one of their operating units is transferred to or consolidated with another entity. They may happen through direct absorption, a merger, a tender offer or a hostile takeover. As a central aspect of corporate strategy and strategic management, M&A activity enables companies to expand, diversify, restructure, or realign their competitive position. In legal terms, a merger is the consolidation of two entities into a single legal entity, whereas an acquisition occurs when one entity takes ownership of another entity's share capital, equity interests or assets. Both typically result in assets, liabilities, and operations being combined under unified control, and a transaction described as a merger may economically resemble an acquisition, and vice versa. M&A transactions are governed by corporate law and are typically subject to regulatory review, particularly under competition (antitrust) law. Many countries require notification and review of proposed mergers to allow the government to assess their potential effects on market competition. In the United States, for example, the Clayton Act prohibits any merger or acquisition that may "substantially lessen competition" or "tend to create a monopoly", and the Hart–Scott–Rodino Act requires providing advance notice to the U.S.
tivity enables companies to expand, diversify, restructure, or realign their competitive position. In legal terms, a merger is the consolidation of two entities into a single legal entity, whereas an acquisition occurs when one entity takes ownership of another entity's share capital, equity interests or assets. Both typically result in assets, liabilities, and operations being combined under unified control, and a transaction described as a merger may economically resemble an acquisition, and vice versa. M&A transactions are governed by corporate law and are typically subject to regulatory review, particularly under competition (antitrust) law. Many countries require notification and review of proposed mergers to allow the government to assess their potential effects on market competition. In the United States, for example, the Clayton Act prohibits any merger or acquisition that may "substantially lessen competition" or "tend to create a monopoly", and the Hart–Scott–Rodino Act requires providing advance notice to the U.S.
al, equity interests or assets. Both typically result in assets, liabilities, and operations being combined under unified control, and a transaction described as a merger may economically resemble an acquisition, and vice versa. M&A transactions are governed by corporate law and are typically subject to regulatory review, particularly under competition (antitrust) law. Many countries require notification and review of proposed mergers to allow the government to assess their potential effects on market competition. In the United States, for example, the Clayton Act prohibits any merger or acquisition that may "substantially lessen competition" or "tend to create a monopoly", and the Hart–Scott–Rodino Act requires providing advance notice to the U.S.
United States Environmental Protection Agency
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QID OVERLAP: Q460173 in land_use_planning (tier:evergreen) and energy_utilities (tier:evergreen). | SHARED TOKENS (33): "approved", "assessment", "conducts", "conservation", "department", "education", "enforcement", "engineers", "environmental", "federal", "financial", "governments", "independent", "information", "january", "legal", "local", "measures", "monitoring", "national"....
approvedassessmentconductsconservationdepartmenteducationenforcementengineersenvironmentalfederalfinancialgovernmentsindependentinformationjanuarylegallocalmeasuresmonitoringnationaloperationpermittingpowersprogramsproposedprotectionpublicregionalresearchresponsibility+3
xon signed an executive order. The order establishing the EPA was ratified by committee hearings in the House and Senate. The agency is led by its administrator, who is appointed by the president and approved by the Senate. Since January 29, 2025, the administrator is Lee Zeldin. The EPA is not a Cabinet department, but the administrator is normally given cabinet rank. The EPA has its headquarters in Washington, D.C. There are regional offices for each of the agency's ten regions, as well as 27 laboratories around the country. The agency conducts environmental assessment, research, and education. It has the responsibility of maintaining and enforcing national standards under a variety of U.S. environmental laws, in consultation with state, tribal, and local governments. EPA enforcement powers include fines, sanctions, and other measures. It delegates some permitting, monitoring, and enforcement responsibility to U.S. states and the federally recognized tribes. The agency also works with industries and all levels of government in a wide variety of voluntary pollution prevention programs and energy conservation efforts. The agency's budgeted employee level in 2023 was 16,204.1 full-time equivalent (FTE).
On July 9, 1970, Nixon proposed an executive reorganization that consolidated many environmental responsibilities of the federal government under one agency, a new Environmental Protection Agency. This proposal included merging pollution control programs from a number of departments, such as the combination of pesticide programs from the United States Department of Agriculture and the United States Department of the Interior. After conducting hearings during that summer, the House and Senate approved the proposal. The EPA was created 90 days before it had to operate, and officially opened its doors on December 2, 1970. The agency's first administrator, William Ruckelshaus, took the oath of office on December 4, 1970. EPA's primary predecessor was the former Environmental Health Divisions of the U.S. Public Health Service (PHS), and its creation caused one of a series of reorganizations of PHS that occurred during 1966–1973. From PHS, EPA absorbed the entire National Air Pollution Control Administration, as well as the Environmental Control Administration's Bureau of Solid Waste Management, Bureau of Water Hygiene, and part of its Bureau of Radiological Health. It also absorbed the Federal Water Quality Administration, which had previously been transferred from PHS to the Department of the Interior in 1966. A few functions from other agencies were also incorporated into EPA: the formerly independent Federal Radiation Council was merged into it; pesticides programs were transferred from the Department of the Interior, Food and Drug Administration, and Agricultural Research Service; and some functions were transferred from the Council on Environmental Quality and Atomic Energy Commission. Upon its creation, EPA inherited 84 sites spread across 26 states, of which 42 sites were laboratories.
1970s In its first year, the EPA had a budget of $1.4 billion and 5,800 employees. At its start, the EPA was primarily a technical assistance agency that set goals and standards. Soon, new acts and amendments passed by Congress gave the agency its regulatory authority. A major expansion of the Clean Air Act was approved in December 1970. EPA staff recall that in the early days there was "an enormous sense of purpose and excitement" and the expectation that "there was this agency which was going to do something about a problem that clearly was on the minds of a lot of people in this country," leading to tens of thousands of resumes from those eager to participate in the mighty effort to clean up America's environment. When EPA first began operation, members of the private sector felt strongly that the environmental protection movement was a passing fad. Ruckelshaus stated that he felt pressure to show a public which was deeply skeptical about government's effectiveness, that EPA could respond effectively to widespread concerns about pollution. The burning Cuyahoga River in Cleveland, Ohio, in 1969 led to a national outcry and criminal charges against major steel companies. The US Justice Department in late 1970 began pollution control litigation in cooperation with the new EPA. Congress enacted the Federal Water Pollution Control Act Amendments of 1972, better known as the Clean Water Act (CWA). The CWA established a national framework for addressing water quality, including mandatory pollution control standards, to be implemented by the agency in partnership with the states. Congress amended the Federal Insecticide, Fungicide, and Rodenticide Act (FIFRA) in 1972, requiring EPA to measure every pesticide's risks against its potential benefits. In 1973 President Nixon appointed Russell E. Train to be the next EPA administrator. In 1974 Congress passed the Safe Drinking Water Act, requiring EPA to develop mandatory federal standards for all public water systems, which serve 90% of the US population. The law required EPA to enforce the standards with the cooperation of state agencies. In October 1976, Congress passed the Toxic Substances Control Act (TSCA) which, like FIFRA, related to the manufacture, labeling and usage of commercial products rather than pollution. This act gave the EPA the authority to gather information on chemicals and require producers to test them, gave it the ability to regulate chemical production and use (with specific mention of PCBs), and required the agency to create the National Inventory listing of chemicals. Congress also enacted the Resource Conservation and Recovery Act (RCRA) in 1976, significantly amending the Solid Waste Disposal Act of 1965. It tasked the EPA with setting national goals for waste disposal, conserving energy and natural resources, reducing waste, and ensuring environmentally sound management of waste. Accordingly, the agency developed regulations for solid and hazardous waste that were to be implemented in collaboration with states. President Jimmy Carter appointed Douglas M. Costle as EPA administrator in 1977.
Boise National Forest
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QID OVERLAP: Q891075 in land_use_planning (tier:branch) and energy_utilities (tier:branch). | SHARED TOKENS (17): "boise", "contains", "districts", "facilities", "feet", "home", "idaho", "land", "maintain", "multiple", "national", "percent", "recreation", "resources", "river", "units", "water".
boisecontainsdistrictsfacilitiesfeethomeidaholandmaintainmultiplenationalpercentrecreationresourcesriverunitswater
Boise National Forest is a National Forest covering 2,203,703 acres (8,918.07 km2) of the U.S. state of Idaho. Created on July 1, 1908, from part of Sawtooth National Forest, it is managed by the U.S. Forest Service as five units: the Cascade, Emmett, Idaho City, Lowman, and Mountain Home ranger districts. The Idaho Batholith underlies most of Boise National Forest, forming the forest's Boise, Salmon River, and West mountain ranges; the forest reaches a maximum elevation of 9,730 feet (2,970 m) on Steel Mountain. Common land cover includes sagebrush steppe and spruce-fir forests; there are 9,600 miles (15,400 km) of streams and rivers and 15,400 acres (62 km2) of lakes and reservoirs. Boise National Forest contains 75 percent of the known populations of Sacajawea's bitterroot, a flowering plant endemic to Idaho. The Shoshone people occupied the forest before European settlers arrived in the early 19th century. Many of the early settlers were trappers and prospectors before gold was discovered in 1862. After the 1860s Boise Basin gold rush ended, mining of tungsten, silver, antimony, and gold continued in the forest until the mid-twentieth century. Recreation facilities include over 70 campgrounds, whitewater and flatwater boating, cabin rentals, and 1,300 miles (2,100 km) of trails for hiking, biking, horseback riding, and motorized off-road vehicle use.
70 m) on Steel Mountain. Common land cover includes sagebrush steppe and spruce-fir forests; there are 9,600 miles (15,400 km) of streams and rivers and 15,400 acres (62 km2) of lakes and reservoirs. Boise National Forest contains 75 percent of the known populations of Sacajawea's bitterroot, a flowering plant endemic to Idaho. The Shoshone people occupied the forest before European settlers arrived in the early 19th century. Many of the early settlers were trappers and prospectors before gold was discovered in 1862. After the 1860s Boise Basin gold rush ended, mining of tungsten, silver, antimony, and gold continued in the forest until the mid-twentieth century. Recreation facilities include over 70 campgrounds, whitewater and flatwater boating, cabin rentals, and 1,300 miles (2,100 km) of trails for hiking, biking, horseback riding, and motorized off-road vehicle use.
one people occupied the forest before European settlers arrived in the early 19th century. Many of the early settlers were trappers and prospectors before gold was discovered in 1862. After the 1860s Boise Basin gold rush ended, mining of tungsten, silver, antimony, and gold continued in the forest until the mid-twentieth century. Recreation facilities include over 70 campgrounds, whitewater and flatwater boating, cabin rentals, and 1,300 miles (2,100 km) of trails for hiking, biking, horseback riding, and motorized off-road vehicle use.
Lucky Peak Dam
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QID OVERLAP: Q6697988 in land_use_planning (tier:branch) and energy_utilities (tier:evergreen). | SHARED TOKENS (24): "ada", "boise", "built", "bureau", "construction", "control", "directly", "engineers", "federal", "feet", "flood", "idaho", "irrigation", "multiple", "operating", "operational", "power", "private", "reclamation", "reservoir"....
adaboisebuiltbureauconstructioncontroldirectlyengineersfederalfeetfloodidahoirrigationmultipleoperatingoperationalpowerprivatereclamationreservoirriversouthernutilitywestern
Lucky Peak Dam is a rolled earth and gravel fill embankment dam in the western United States, located on the Boise River in southwestern Idaho. In Ada County east of Boise, it is directly downstream of Arrowrock Dam, a concrete arch dam completed in 1915. At the time of its construction in the early 1950s, Lucky Peak's primary purpose was flood control, with a secondary purpose of irrigation. The normal operating elevation of the full reservoir is 3,055 feet (931 m) above sea level, the empty reservoir's elevation (Boise River) is 2,824 feet (861 m). Construction began in November 1949 by the U.S. Army Corps of Engineers. Most of the federal dams in southern Idaho, including the others on the Boise River, were built by the Bureau of Reclamation, not the Corps of Engineers. The Idaho Power Company, a private utility, built multiple hydroelectric dams on the Snake River. Located along State Highway 21, ten miles (16 km) upstream from the city of Boise, it was built without hydroelectric power generation. Construction of the powerhouse began in 1984 and it became operational in 1988, generating electricity primarily for Seattle City Light. The dam was named after a nearby mountain in the Boise Range, about four miles (6 km) north of the dam (43.605°N 116.062°W / 43.605; -116.062). The summit elevation of Lucky Peak mountain (a.k.a.
rimary purpose was flood control, with a secondary purpose of irrigation. The normal operating elevation of the full reservoir is 3,055 feet (931 m) above sea level, the empty reservoir's elevation (Boise River) is 2,824 feet (861 m). Construction began in November 1949 by the U.S. Army Corps of Engineers. Most of the federal dams in southern Idaho, including the others on the Boise River, were built by the Bureau of Reclamation, not the Corps of Engineers. The Idaho Power Company, a private utility, built multiple hydroelectric dams on the Snake River. Located along State Highway 21, ten miles (16 km) upstream from the city of Boise, it was built without hydroelectric power generation. Construction of the powerhouse began in 1984 and it became operational in 1988, generating electricity primarily for Seattle City Light. The dam was named after a nearby mountain in the Boise Range, about four miles (6 km) north of the dam (43.605°N 116.062°W / 43.605; -116.062). The summit elevation of Lucky Peak mountain (a.k.a.
rvoir's elevation (Boise River) is 2,824 feet (861 m). Construction began in November 1949 by the U.S. Army Corps of Engineers. Most of the federal dams in southern Idaho, including the others on the Boise River, were built by the Bureau of Reclamation, not the Corps of Engineers. The Idaho Power Company, a private utility, built multiple hydroelectric dams on the Snake River. Located along State Highway 21, ten miles (16 km) upstream from the city of Boise, it was built without hydroelectric power generation. Construction of the powerhouse began in 1984 and it became operational in 1988, generating electricity primarily for Seattle City Light. The dam was named after a nearby mountain in the Boise Range, about four miles (6 km) north of the dam (43.605°N 116.062°W / 43.605; -116.062). The summit elevation of Lucky Peak mountain (a.k.a.
Boise, Idaho
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QID OVERLAP: Q35775 in land_use_planning (tier:branch) and energy_utilities (tier:branch). | SHARED TOKENS (17): "ada", "annual", "boise", "capital", "counties", "downtown", "feet", "home", "idaho", "locally", "major", "metropolitan", "population", "river", "technology", "treasure", "valley".
adaannualboisecapitalcountiesdowntownfeethomeidaholocallymajormetropolitanpopulationrivertechnologytreasurevalley
Boise (locally also ) is the capital and most populous city in the U.S. state of Idaho. It is the county seat of Ada County. The population of the city was 235,685 at the 2020 census. The Boise metropolitan area, located in the Treasure Valley, includes five counties of Idaho with an estimated population of 846,000, the most populous metropolitan area in Idaho and 95th-most populous in the United States. Located on the Boise River in southwestern Idaho, it is 41 miles (66 km) east of the Oregon border and 110 miles (177 km) north of the Nevada border. Downtown Boise's elevation is 2,704 feet (824 m) above sea level. Boise is home to major employers in the technology, manufacturing, and service sectors, including companies such as Micron Technology and Hewlett-Packard.
an area in Idaho and 95th-most populous in the United States. Located on the Boise River in southwestern Idaho, it is 41 miles (66 km) east of the Oregon border and 110 miles (177 km) north of the Nevada border. Downtown Boise's elevation is 2,704 feet (824 m) above sea level. Boise is home to major employers in the technology, manufacturing, and service sectors, including companies such as Micron Technology and Hewlett-Packard.
...that the military should continue killing Indians 'until the last Indian in the Territories was either on his reservation or enriched the sagebrush with his decaying carcass.' ...if the Indians refused to move there, 'they will be killed or put on the reservation by force, and certainly shot if they don't stay there.' Furthermore, the editor continues, 'The idea that the Indians have any right to the soil is ridiculous. ...They have no more rights to the soil of the Territories of the United States than wolves or coyotes...' This would be our plan of establishing friendship upon an eternal basis with our Indians: Let all the hostile bands of Idaho Territory be called in (they will not be caught in any other manner) to attend a grand treaty; plenty of blankets and nice little trinkets distributed among them; plenty of grub on hand; have a real jolly time with them; then just before the big feast put strychnine in their meat and poison to death the last mother's son of them. At the same time, native warriors around the valley, under the leadership of Howluck also known as "Bigfoot" among white settlers, among others, waged an escalating and intensified guerrilla campaign of harassment of passerby caravans along the Oregon Trail. The United States Army also escalated and intensified "punitive expeditions" against formations of warriors and against civilian communities as well. This marked the start of the "unofficial" Snake War in 1866. This war lasted until 1868, and is statistically the deadliest of the Indian Wars in the West in terms of casualties. In the end, 1,762 men were counted as the casualties of this war from both sides. In 1868, Fort Hall Indian Reservation was established in Southeastern Idaho, about 220 miles upstream, according to the terms of Fort Bridger Treaty. The Boise Valley Shoshone and Bannock Tribes were not party to this treaty. Nevertheless, in April 1869, the United States Military embarked on a campaign of "Removal, rounding up of natives in the region including in and around Boise, and expelling them with cavalry escort to Fort Hall Indian Reservation. This period is known among the Shoshone and Bannock people as Idaho's Trail of Tears. Some of the natives managed to escape, and they ran to either Duck Valley or Fort McDermitt in Nevada. Incorporation and growth Boise's early growth was significantly driven by its role in supplying the nearby gold towns that sprung up in the 1860s northeast and then southwest of the town. Miners sometimes wintered in Boise and a number of early prominent businessmen were miners who settled in town in the years after the gold rush waned. By 1864 substantial agricultural production was underway on easily irrigated lands near the river and three canal companies had been incorporated. Early transportation improvements were largely a result of toll road franchises awarded by the territorial legislature starting in the 1860s. These first ran from Fort Boise to the mining centers in the Boise Basin and east to Rocky Bar and to Rattlesnake Station where they connected to the Oregon Trail. Territorial census records from a special 1864 enumeration list the population of Boise as 1,658, and an act of December 12, 1864, was the first attempt by the Idaho Territorial Legislature to incorporate the city. This was rejected by voters the following March. Two more unsuccessful attempts were made to organize a city administration by election before the 1866 version of the city charter was approved by voters on January 6, 1868. The growing number of homes and businesses, for which owners wanted proper legal title, may have contributed to the eventual success of incorporation. All of these rejected efforts to incorporate the city came after Boise had been controversially made the state capital in 1864 over strong opposition from northern Idaho interests. This decision reflected the rapid shift of population growth from north to south after the discovery of gold in southern Idaho. By 1868 Boise had over 400 permanent buildings with a wide range of commercial services. 1868 also marked the formal beginning of a long advocacy for railroad connections to other Idaho communities and, just as importantly, to other growing cities in the west such as Portland, Oregon. Competing railroad and western state government interests frustrated these efforts for many years. Designed by Alfred B. Mullett, the U.S. Assay Office at 210 Main Street was built in 1871 and today is a National Historic Landmark. It first began accepting gold and silver for purchase on March 2, 1872, largely eliminating the need to transport ore to the mint in San Francisco. A territorial penitentiary, now known as the Old Idaho State Penitentiary, opened the same month several miles east of town. Mining continued to be important to Boise's economic growth and periodic booms contributed to population growth as well, though production of gold and silver probably peaked in the 1860s. 1882's gold and silver production of $3,500,000 declined to $1,488,315 (including lead) by 1899. Boise began to earn its City of Trees nickname in this period with a popular focus on a range of tree planting projects. Thomas J. Davis planted several thousand fruit trees in 1864 and several other early businessmen either founded nurseries or orchards of their own. In the 1870s tree planting began in earnest in downtown Boise led by prominent hotels as well as businessmen and residents. In 1907 Davis donated 43 acres of his orchard property to the city for use as a park in the name of his wife Julia. Commercial agriculture continued to expand, but was slowed by the lack of reliable rail links to regional and national markets and by a lack of large scale irrigation projects, which themselves were often tied to hoped-for railroad projects for financing. A.D. Foote, a successful mining engineer, drew up plans to irrigate up to 500,000 acres immediately south of Boise in 1882, but progress was halting and smaller farms were the norm until after the turn of the century with most located near to the river bottom where soil was productive and irrigation more easily achieved. Fruit orchards proliferated and sugar beets, still an important agricultural industry in Idaho, began to be widely cultivated in the 1890s. Cattle and sheep farming became increasingly important as the century closed. With the exception of dairy, most livestock products were exported from Idaho, unlike other agricultural products which were still largely scaled to support local markets. The timber industry also increasingly thrived in the Boise market in the 1880s and 1890s. Large quantities of timber were exported from elsewhere in Idaho, but a growing Boise supported the expansion of Alexander Rossi's sawmill, first established in 1865. Prominent early Boisean William Ridenbaugh had inherited control of the canal now bearing his name from his uncle William Morris in 1878 and later partnered with Rossi to expand the sawmill capacity under the name Rossi and Ridenbaugh Lumber Company. Their materials supported bridge building and the rapid expansion of Boise in the 1890s. As with many early infrastructure ventures, electrification succeeded only after at least one false start. July 4, 1887, marked the start of electrical transmission from a plant located on the Bench. William Ridenbaugh provided expertise and manpower for the water supply and several months were spent rigging poles and lines from the Bench to the service area across the river. Additional electrical supplies allowed the building of an electric streetcar line in 1891. This ran without interruption until buses replaced the lines in 1927, tracking—and sometimes driving—the development of Boise and nearby communities. This system expanded over several decades, reaching into the North End, South Boise and across the river on Front St. A loop line, completed in 1912, ran as far as Caldwell and Nampa, providing transport throughout the valley. Three early trolley companies merged in 1912 to form the Idaho Traction Company with a depot at 7th and Bannock Streets downtown. Additional services and urban amenities arrived in the 1890s as Boise grew. Exploratory drilling for hot water was successful in 1890 and by the end of the decade many homes along Warm Springs avenue were being heated by this source. A natatorium was built in 1892 close to the source of the hot water near the Idaho State Penitentiary. Churches serving several denominations, a Jewish synagogue, a major hardware store and department store, a Masonic hall, the Columbia Theater, Saint Alphonsus' Hospital, a number of parochial and secular schools, a City Hall and a new Union Pacific passenger station, constructed when service was finally extended to downtown, were all built during the 1890s. Falk's Department Store sponsored a semi-professional baseball team representing Boise from at least 1892 and the city supported other organized sports as they became popular.
Sewage treatment
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QID OVERLAP: Q221275 in land_use_planning (tier:branch) and energy_utilities (tier:branch). | SHARED TOKENS (47): "application", "approximately", "businesses", "centralized", "connected", "construction", "contains", "costs", "decentralized", "demand", "design", "different", "discharge", "discharges", "drainage", "engineers", "even", "expected", "field", "industrial"....
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age treatment is a type of wastewater treatment which aims to remove contaminants from sewage to produce an effluent that is suitable for discharge to the surrounding environment or an intended reuse application, thereby preventing water pollution from raw sewage discharges. Sewage contains wastewater from households and businesses and possibly pre-treated industrial wastewater. There are a large number of sewage treatment processes to choose from. These can range from decentralized systems (including on-site treatment systems) to large centralized systems involving a network of pipes and pump stations (called sewerage) which convey the sewage to a treatment plant. For cities that have a combined sewer, the sewers will also carry urban runoff (stormwater) to the sewage treatment plant. Sewage treatment often involves two main stages, called primary and secondary treatment, while advanced treatment also incorporates a tertiary treatment stage with polishing processes and nutrient removal. Secondary treatment can reduce organic matter (measured as biological oxygen demand) from sewage,  using aerobic or anaerobic biological processes. A quaternary treatment step (sometimes referred to as advanced treatment) can also be added for the removal of organic micropollutants, such as pharmaceuticals. This has been implemented in full-scale in Sweden. A large number of sewage treatment technologies have been developed, mostly using biological treatment processes. Design engineers and decision makers need to take into account technical and economical criteria of each alternative when choosing a suitable technology. Often, the main criteria for selection are desired effluent quality, expected construction and operating costs, availability of land, energy requirements and sustainability aspects. In developing countries and in rural areas with low population densities, sewage is often treated by various on-site sanitation systems and not conveyed in sewers. These systems include septic tanks connected to drain fields, on-site sewage systems (OSS), and vermifilter systems. On the other hand, advanced and relatively expensive sewage treatment plants may include tertiary treatment with disinfection and possibly even a fourth treatment stage to remove micropollutants. At the global level, an estimated 52% of sewage is treated. However, sewage treatment rates are highly unequal for different countries around the world. For example, while high-income countries treat approximately 74% of their sewage, developing countries treat an average of just 4.2%. The treatment of sewage is part of the field of sanitation. Sanitation also includes the management of human waste and solid waste as well as stormwater (drainage) management.
Examples for more low-tech, often less expensive sewage treatment systems are shown below. They often use little or no energy. Some of these systems do not provide a high level of treatment, or only treat part of the sewage (for example only the toilet wastewater), or they only provide pre-treatment, like septic tanks. On the other hand, some systems are capable of providing a good performance, satisfactory for several applications. Many of these systems are based on natural treatment processes, requiring large areas, while others are more compact.
Examples for more high-tech, intensive or mechanized, often relatively expensive sewage treatment systems are listed below. Some of them are energy intensive as well. Many of them provide a very high level of treatment. For example, broadly speaking, the activated sludge process achieves a high effluent quality but is relatively expensive and energy intensive. Disposal or treatment options There are other process options which may be classified as disposal options, although they can also be understood as basic treatment options. These include: Application of sludge, irrigation, soak pit, leach field, fish pond, floating plant pond, water disposal/groundwater recharge, surface disposal and storage. The application of sewage to land is both: a type of treatment and a type of final disposal. It leads to groundwater recharge and/or to evapotranspiration. Land application include slow-rate systems, rapid infiltration, subsurface infiltration, overland flow. It is done by flooding, furrows, sprinkler and dripping.
P
Q476115 QID OVERLAP 0.800
QID OVERLAP: Q476115 in land_use_planning (tier:branch) and energy_utilities (tier:branch). | SHARED TOKENS (23): "active", "business", "capital", "category", "changes", "control", "development", "expansion", "finance", "financial", "financing", "firm", "firms", "long-term", "management", "operational", "ownership", "private", "provide", "public"....
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Private equity (PE) is stock in a private company that does not offer stock to the general public. Instead, it is offered to specialized investment funds and limited partnerships that take an active role in managing and structuring the companies. In colloquial usage, "private equity" can refer to these investment firms rather than the companies in which they invest. Private-equity capital is invested into a target company either by an investment management company (private equity firm), a venture capital fund, or an angel investor; each category of investor has specific financial goals, management preferences, and investment strategies for profiting from their investments. Private equity can provide working capital to finance a target company's expansion, including the development of new products and services, operational restructuring, management changes, and shifts in ownership and control. As a financial product, a private-equity fund is private capital for financing a long-term investment strategy in an illiquid business enterprise.
Leveraged buyout (LBO) refers to a strategy of making equity investments as part of a transaction in which a company, business unit, or business asset is acquired from the current shareholders typically with the use of financial leverage. The companies involved in these transactions are typically mature and generate operating cash flows. Private-equity firms view target companies as either Platform companies, which have sufficient scale and a successful business model to act as a stand-alone entity, or as add-on / tuck-in / bolt-on acquisitions, which would include companies with insufficient scale or other deficits. Leveraged buyouts involve a financial sponsor agreeing to an acquisition without itself committing all the capital required for the acquisition. To do this, the financial sponsor will raise acquisition debt, which looks to the cash flows of the acquisition target to make interest and principal payments. Acquisition debt in an LBO is often non-recourse to the financial sponsor and has no claim on other investments managed by the financial sponsor. Therefore, an LBO transaction's financial structure is particularly attractive to a fund's limited partners, allowing them the benefits of leverage, but limiting the degree of recourse of that leverage. This kind of financing structure leverage benefits an LBO's financial sponsor in two ways: (1) the investor only needs to provide a fraction of the capital for the acquisition, and (2) the returns to the investor will be enhanced, as long as the return on assets exceeds the cost of the debt. As a percentage of the purchase price for a leverage buyout target, the amount of debt used to finance a transaction varies according to the financial condition and history of the acquisition target, market conditions, the willingness of lenders to extend credit (both to the LBO's financial sponsors and the company to be acquired) and the interest costs and the ability of the company to cover those costs. Historically the debt portion of a LBO will range from 60 to 90% of the purchase price.
"Distressed-to-Control" ("Loan-to-Own") investment whereby the investor buys debt securities in hope of acquiring ownership and control of the company's equity after financing the corporate restructuring of the target company; "Special Situations" ("Turnaround") investment wherein the investor buys debt securities and equity investments, to be used as rescue financing that will restore the profitability of the financially-weak target company. Moreover, the private-equity investment strategies of hedge funds also include actively trading the loans held and the bonds issued by the financially-weak target companies. Secondaries Secondary investments refer to investments made in existing private-equity assets. These transactions can involve the sale of private equity fund interests or portfolios of direct investments in privately held companies through the purchase of these investments from existing institutional investors. By its nature, the private-equity asset class is illiquid, intended to be a long-term investment for buy and hold investors. Secondary investments allow institutional investors, particularly those new to the asset class, to invest in private equity from older vintages than would otherwise be available to them. Secondaries also typically experience a different cash flow profile, diminishing the j-curve effect of investing in new private-equity funds. Often investments in secondaries are made through third-party fund vehicle, structured similar to a fund of funds although many large institutional investors have purchased private-equity fund interests through secondary transactions.
Anderson Ranch Dam
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QID OVERLAP: Q4754153 in land_use_planning (tier:branch) and energy_utilities (tier:evergreen). | SHARED TOKENS (36): "act", "agriculture", "american", "approximately", "board", "boise", "bureau", "capacity", "center", "completion", "construction", "design", "falls", "feet", "home", "idaho", "irrigation", "law", "materials", "national"....
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began in 1941 and experienced numerous challenges with materials, fuel, and labor shortages during World War II. Work was halted for over nine months beginning in late December 1942. The Reclamation Act of 1902 had racial exclusions on labor which were strictly adhered to until Congress changed the law in 1943. This allowed Japanese American internees to work on Reclamation projects; Anderson Ranch utilized internees from the Minidoka War Relocation Center, northeast of Twin Falls. The South Fork of the Boise River originates in the Smoky Mountains north of Fairfield. Its watershed includes portions of the Smoky Mountains, Soldier Mountains, Boise National Forest, and Sawtooth National Forest. Below the dam, the South Fork flows northwestward into the reservoir behind the concrete Arrowrock Dam, completed in 1915. The Bureau of Reclamation and Idaho Water Resource Board are working on raising the dam by six feet (1.8 m), resulting in approximately 29,000 acre-feet (35,800,000 m3) of new storage space.
d operated by the U.S. Bureau of Reclamation. When completed 76 years ago in 1950, Anderson Ranch was the tallest dam of its type in the world. Its primary purpose is to provide irrigation water for agriculture, with a secondary purpose of hydroelectric power. Its generating capacity was increased from 27 to 40 MW in 1986. Its reservoir has a spillway elevation of 4,196 feet (1,280 m) above sea level. The construction of the dam began in 1941 and experienced numerous challenges with materials, fuel, and labor shortages during World War II. Work was halted for over nine months beginning in late December 1942. The Reclamation Act of 1902 had racial exclusions on labor which were strictly adhered to until Congress changed the law in 1943. This allowed Japanese American internees to work on Reclamation projects; Anderson Ranch utilized internees from the Minidoka War Relocation Center, northeast of Twin Falls. The South Fork of the Boise River originates in the Smoky Mountains north of Fairfield. Its watershed includes portions of the Smoky Mountains, Soldier Mountains, Boise National Forest, and Sawtooth National Forest. Below the dam, the South Fork flows northwestward into the reservoir behind the concrete Arrowrock Dam, completed in 1915. The Bureau of Reclamation and Idaho Water Resource Board are working on raising the dam by six feet (1.8 m), resulting in approximately 29,000 acre-feet (35,800,000 m3) of new storage space.
ward into the reservoir behind the concrete Arrowrock Dam, completed in 1915. The Bureau of Reclamation and Idaho Water Resource Board are working on raising the dam by six feet (1.8 m), resulting in approximately 29,000 acre-feet (35,800,000 m3) of new storage space.
Nampa, Idaho
Q622633 QID OVERLAP 0.780
QID OVERLAP: Q622633 in land_use_planning (tier:branch) and energy_utilities (tier:branch). | SHARED TOKENS (14): "boise", "canyon", "college", "footprint", "home", "idaho", "meaning", "meridian", "metropolitan", "nampa", "population", "principal", "university", "western".
boisecanyoncollegefootprinthomeidahomeaningmeridianmetropolitannampapopulationprincipaluniversitywestern
pa ( ) is the most populous city in Canyon County, Idaho, United States. The population was 100,200 at the 2020 census. It is Idaho's third-most populous city. Nampa is about 20 miles (32 km) west of Boise along Interstate 84, and 6 miles (9.7 km) west of Meridian. It is the second principal city of the Boise metropolitan area. The name "Nampa" may have come from a Shoshoni word meaning 'moccasin' or 'footprint'. According to toponymist William O. Bright, the name comes from the Shoshoni word /nampai/, meaning "foot".
History Nampa had its beginnings in the early 1880s when the Oregon Short Line Railroad built a line from Granger, Wyoming, to Huntington, Oregon, that passed through Nampa. In Nampa there is a history museum that marks the railroad's significance. More railroad lines sprang up through Nampa, making it an important railroad town. Alexander and Hannah Duffes established one of the town's first homesteads, eventually forming the Nampa Land and Improvement Company with the help of their friend and co-founder, James McGee. Despite the name, many early settlers called the town "New Jerusalem" because of its citizens' strong religious focus. After only a year the town grew from 15 homes to 50. As amenities were added, Nampa continued to grow, and it was incorporated in 1891. Downtown Nampa's street grid is oriented with the railroad tracks, which run northwest–southeast; this was done intentionally by Alexander Duffes to prevent accidents like one that occurred earlier in a town he had platted near Toronto, where a woman and her two children were killed by a train when their buggy wheel got stuck as they crossed the tracks. As the Oregon Short Line railroad originally bypassed Boise, Nampa has the fanciest of many railroad depots built in the area. Nampa gained attention in 1889 due to a purported archaeological discovery known as the Nampa figurine. George Frederick Wright wrote up details that year for the Boston Society of Natural History. The first elementary school was built in the 1890s. Lakeview School was on a hill on 6th Street and 12th Avenue North, with a view of Lake Ethel. Just after the school's centennial celebration, it was condemned as a school and sold to the First Mennonite Church. In 2008 the building was refurbished, and it is now used by the Idaho Arts Charter School. Lake Ethel, an irrigation reservoir, had long been the site of community picnics, and many citizens fished, swam, boated, and even hunted on it and its surrounding property. But the hunting didn't last long, as O. F. Persons, owner of the adjoining homestead, took offense when local hunters started shooting his pet ducks. The city later auctioned off the lake. E. H. Dewey (a former Nampa mayor) was the only bidder. But occasional flooding led to a series of lawsuits from neighbors. Dewey eventually drained Lake Ethel. Not long after, the city council became interested in buying back the Fritz Miller property as well as the Dewey home. Pressure had been building for more than four years. Nampa citizens wanted another park. On August 7, 1924, the city council passed an ordinance to purchase the Miller property and name it Lakeview Park. A bandstand was completed in 1928, and the municipal swimming pool opened on August 13, 1934. It is Nampa's largest park and many community celebrations are held there. Colonel William H. Dewey, a man who made a fortune mining in Silver City, built the Dewey Palace Hotel in 1902 for $250,000. He died in his hotel in 1903, leaving his son $1 million. The hotel survived the great fire of 1909, which burned several blocks of downtown Nampa, but was razed in 1963 after redevelopment plans failed. Relics from the hotel such as the chandelier and the hotel safe can be found at the Canyon County Historical Museum, which is in the old train depot on Front Street and Nampa City Hall. After demolition the location on First Street between 11th and 12th Ave. South was sold to private enterprise, including a bank and tire store, replacing this building with modern structures. A public-use postage stamp sized park was later placed across the street from the old palace property as a collaboration between the Downtown Alliance of Nampa (the local business council) and an Eagle Scout Project for the Boy Scouts of America. The park includes a large mural/wall sculpture of running horses commissioned for the project. A Carnegie library was built downtown in 1908; it burned down after the library moved in 1966. Nampa Public Library was then on the corner of 1st Street and 11th Avenue South in the old bank building. A new library, on 12th Avenue South, opened in 2015. Deer Flat Reservoir, an offstream irrigation storage reservoir, was constructed by the United States Bureau of Reclamation between 1906 and 1911. Known locally as Lake Lowell, it is surrounded by the Deer Flat National Wildlife Refuge, established in 1909 by President Theodore Roosevelt. The refuge is administered by the U.S. Fish and Wildlife Service. Lake Lowell is filled by the concrete New York Canal; the water is diverted from the Boise River a few miles below Lucky Peak Dam. In 1910, the Idaho State School and Hospital was built northwest of Nampa for the state's developmentally challenged population. It opened in 1918. The institution was largely self-sufficient, with a large farm staffed by the residents. The higher-functioning residents also cared for residents who could not care for themselves. The land for the farm was sold and is now golf courses (Centennial and Ridgecrest), and the residents no longer give primary care to other residents. The institution is modernized and remains in operation, though a few of the oldest buildings now house juvenile offenders. Nampa held an annual harvest festival and farmers' market from about 1908, a time of celebration and community fun. From this festival emerged the Snake River Stampede Rodeo in 1937, which continues to this day. It is one of the top 12 rodeos in the pro rodeo circuits. In 1913, a local congregation of the Church of the Nazarene built a small elementary school, which became to Northwest Nazarene College in 1915 and finally Northwest Nazarene University. As of 2025, the university has approximately 1,800 undergraduate and graduate students. Karcher Mall opened in 1965, the first enclosed shopping mall in the Treasure Valley. It was "the place to gather" for several decades until the Boise Towne Square mall was built in Boise in 1988, drawing business away. Karcher Mall was renamed District 208 in 2022. The Idaho Press-Tribune is the local newspaper for the Canyon County area.
Idaho Hispanic Community Center (IH2C) In 2003, the Hispanic Cultural Center of Idaho (HCCI) opened thanks to community support. It has recently transitioned back to the City of Nampa and was renamed the Idaho Hispanic Community Center (IH2C) and is home to the Idaho Hispanic Foundation. It hosts events, classes, and festivals, including Día de los Muertos, Hispanic Heritage Month, and Día Internacional de la Mujer. It serves as a meeting place for associations and groups. Displays of cultural history are available to the public. Nampa Train Depot Museum The Nampa Train Depot Museum is a historical depot with displays and archives of the area's railroad and cultural history. The Canyon County Historical Society saved the depot from demolition in 1972. Annual Festival of the Arts Nampa's Festival of the Arts, which began in 1987, is held in Lakeview Park every year and includes local art, music, dance, and food.
P
Q7245403 QID OVERLAP 0.780
QID OVERLAP: Q7245403 in land_use_planning (tier:branch) and energy_utilities (tier:branch). | SHARED TOKENS (14): "agricultural", "american", "household", "industrial", "legal", "merely", "ownership", "person", "right", "rights", "source", "subsequent", "system", "water".
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In the American legal system, prior appropriation water rights is the doctrine that the first person to take a quantity of water from a water source for "beneficial use" (agricultural, industrial or household) has the right to continue to use that quantity of water for that purpose. Subsequent users can take the remaining water for their own use if they do not impinge on the rights of previous users.
Nature of the right The legal details of prior appropriation vary from state to state. Under the prior appropriation system, the right is initially allotted to those who are "first in time of use"; these rights of withdrawal can then trade on the open market, like other property. For water sources with many users, a government or quasi-government agency is usually charged with overseeing allocations. Allocations involving water sources that cross state borders or international borders can be quite contentious, and are generally governed by federal court rulings, interstate agreements and international treaties. A claim of prior appropriation must prove four sub-claims: diversion (that the water had been withdrawn), priority (that the withdrawer had diverted water prior to the other claimant), intent (that the water had been withdrawn by design), and beneficial use (that the water was put to a publicly-acceptable end). If proved, the initial person to use a quantity of water from a water source for a beneficial use has the right to continue to use the same quantity of water for the same purpose. Subsequent users can use the remaining water for their own beneficial purposes provided that they do not impinge on the rights of previous users; this is the priority element of the doctrine. But neither can a senior user change the manner (i.e., location) in which they appropriate water to the detriment of a junior user. These Preservation of Conditions were granted to the second user after Farmers Highline Canal & Reservoir Co. v. City of Golden, 272 P.2d 629 (Colo. 1954). A senior water user could, for example, only have been using the water during a particular season. Then the purchaser of the water right could only use the water in the same season as when the right was established. In addition, the state may put additional conditions on the use of the water right to prevent polluting or inefficient uses of water. Beneficial use is commonly defined as agricultural, industrial or household use. The doctrine has historically excluded ecological purposes, such as maintaining a natural body of water and the wildlife that depends on it, but some jurisdictions now accept such claims. The extent to which private parties may own such rights varies among the states. Each water right has a yearly quantity and an appropriation date. Each year, the user with the earliest appropriation date (known as the "senior appropriator") may use up to their full allocation (provided the water source can supply it). Then the user with the next earliest appropriation date may use their full allocation and so on. In cases of water shortages, prior-appropriation does not require a senior user to utilize less water than usual. Therefore, during times of drought, users with junior appropriation dates might not receive their full allocation or even any water at all. When a water right is sold, it retains its original appropriation date. Only the amount of water historically consumed can be transferred if a water right is sold. For example, if alfalfa is grown using flood irrigation, the amount of the return flow may not be transferred, only the amount that would be necessary to irrigate the amount of alfalfa historically grown. Prior appropriation rights are subject to certain adverse possession-type rules to reduce speculation. Withdrawal rights can be lost or shrunk over time if unused for a certain number of years, or if a litigant can demonstrate that the water's use is not beneficial.
Criticism Each drop of rain falling through the sky has already been allocated to a user. Leave the hose running between rinses while you wash your car and you won't run afoul of the law; but if you gather a pailful of rainwater and pour on your tomato plant, look over your shoulder for a water cop. You will be preventing those raindrops from entering the watershed, depriving people downstream from the surrounding creeks and rivers of their rights to use their apportioned amounts of streamflow. The doctrine of prior appropriation comes crashing up against the imperative to conserve scarce water. Colorado made it legal for some homeowners to harvest rain and snow from their roofs. Tucson is encouraging its citizens to gather rainwater. Santa Fe made catchment devices mandatory for new dwellings. But, in Utah and Washington (with the exception of Seattle), harvesting raindrops is still a crime. Even though water markets increasingly gain ground, many criticize the prior appropriation system for failing to adequately adjust to society's evolving values and needs. Environmentalists and recreational river-users demand more water be left in rivers and streams, but courts have been slow to accept these requests as beneficial uses. Conversely, the tool of beneficial use is too tied to custom to encourage users to conserve. An appropriator who uses water inefficiently retains the right to the full allotment, but an appropriator who uses only a portion risks losing the right to the rest, and water right markets remain too illiquid to purchase any excess. As a result, the vast majority of water in the West still is allocated to agricultural uses despite cries for additional water from growing cities. High demand can cause an over-appropriation of the waters, in which there are more water rights for a particular stream than water actually available. This leads to an apparent inefficiency: if a water source is over-appropriated, the latest users will almost never see water from their claims.
Septic tank
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connectedefficiencyfieldgroundwaterprocessesreduceruralsepticsystemsystemsthereforetreatmentunitswastewater
d organics, but the treatment efficiency is only moderate (referred to as "primary treatment"). Septic tank systems are a type of simple onsite sewage facility. They can be used in areas that are not connected to a sewerage system, such as rural areas. The treated liquid effluent is commonly disposed in a septic drain field, which provides further treatment. Nonetheless, groundwater pollution may occur and is a problem. The term "septic" refers to the anaerobic bacterial environment that develops in the tank that decomposes or mineralizes the waste discharged into the tank. Septic tanks can be coupled with other onsite wastewater treatment units such as biofilters or aerobic systems involving artificially forced aeration. The rate of accumulation of sludge—also called septage or fecal sludge—is faster than the rate of decomposition.
ved, which is commonly done with a vacuum truck. Description A septic tank consists of one or more concrete or plastic tanks of between 4,500 and 7,500 litres (1,000 and 2,000 gallons); one end is connected to an inlet wastewater pipe and the other to a septic drain field. Generally these pipe connections are made with a T pipe, allowing liquid to enter and exit without disturbing any crust on the surface. Today, the design of the tank usually incorporates two chambers, each equipped with an access opening and cover, and separated by a dividing wall with openings located about midway between the floor and roof of the tank. Wastewater enters the first chamber of the tank, allowing solids to settle and scum to float. The settled solids are anaerobically digested, reducing the volume of solids. The liquid component flows through the dividing wall into the second chamber, where further settlement takes place. One option for the effluent is the draining into the septic drain field, also referred to as a leach field, drain field or seepage field, depending upon locality. A percolation test is required prior to installation to ensure the porosity of the soil is adequate to serve as a drain field. Septic tank effluent can also be conveyed to a secondary treatment, typically constructed wetlands. Constructed wetlands benefit from the good performance of septic tanks at removing solids, which avoids them getting clogged quickly. Septic tank effluent can also be conveyed to a centralized treatment facility. The remaining impurities are trapped and eliminated in the soil, with the excess water eliminated through percolation into the soil, through evaporation, and by uptake through the root system of plants and eventual transpiration or entering groundwater or surface water. A piping network, often laid in a stone-filled trench (see weeping tile), distributes the wastewater throughout the field with multiple drainage holes in the network. The size of the drain field is proportional to the volume of wastewater and inversely proportional to the porosity of the drainage field. The entire septic system can operate by gravity alone or, where topographic considerations require, with inclusion of a lift pump. Certain septic tank designs include siphons or other devices to increase the volume and velocity of outflow to the drainage field. These help to fill the drainage pipe more evenly and extend the drainage field life by preventing premature clogging or bioclogging. An Imhoff tank is a two-stage septic system where the sludge is digested in a separate tank. This avoids mixing digested sludge with incoming sewage. Also, some septic tank designs have a second stage where the effluent from the anaerobic first stage is aerated before it drains into the seepage field. A properly designed and normally operating septic system is odour-free.
User's actions Excessive disposal of cooking oils and grease can cause the inlet drains to block. Oils and grease are often difficult to degrade and can cause odor problems and difficulties with the periodic emptying. Flushing non-biodegradable waste items down the toilet such as cigarette butts, cotton buds/swabs or menstrual hygiene products and condoms can cause a septic tank to clog and fill rapidly, so these materials should not be disposed of in that manner. The same applies when the toilet is connected to a sewer rather than a septic tank. Using the toilet for disposal of food waste can cause a rapid overload of the system with solids and contribute to failure. Certain chemicals may damage the components of a septic tank or kill the bacteria needed in the septic tank for the system to operate properly, such as pesticides, herbicides, materials with high concentrations of bleach or caustic soda (lye), or any other inorganic materials such as paints or solvents. Using water softeners – the brine discharge from water softeners may harm the bacteria responsible for breaking down the wastewater.
Ada County, Idaho
Q109820 QID OVERLAP 0.760
QID OVERLAP: Q109820 in land_use_planning (tier:branch) and energy_utilities (tier:branch). | SHARED TOKENS (13): "ada", "boise", "capital", "district", "home", "idaho", "jurisdiction", "largest", "local", "metropolitan", "population", "private", "roads".
adaboisecapitaldistricthomeidahojurisdictionlargestlocalmetropolitanpopulationprivateroads
Ada County is located in the southwestern part of Idaho, United States. As of the 2020 census, the county had a population of 494,967, which by 2025 was estimated to have risen to 546,141. Ada County is by far the state's most populous county; it is home to 26.8% of the state's population. The county seat and largest city is Boise, which is also the state capital. Ada County is included in the Boise metropolitan area. The Ada County Highway District has jurisdiction over all the local county and city streets, except for private roads and state roads.
populous county; it is home to 26.8% of the state's population. The county seat and largest city is Boise, which is also the state capital. Ada County is included in the Boise metropolitan area. The Ada County Highway District has jurisdiction over all the local county and city streets, except for private roads and state roads.
ea. The Ada County Highway District has jurisdiction over all the local county and city streets, except for private roads and state roads. In the interior Pacific Northwest east of the Cascade Range, Ada County ranks second in population, behind Spokane County, Washington. History Ada County was created by the Idaho Territory legislature on December 22, 1864, partitioned from Boise County. It is named for Ada Riggs, the daughter of H. C. Riggs, a member of the legislature; he established the county and was a co-founder of Boise.
Kuna, Idaho
Q1515177 QID OVERLAP 0.680
QID OVERLAP: Q1515177 in land_use_planning (tier:branch) and energy_utilities (tier:branch). | SHARED TOKENS (9): "ada", "additional", "boise", "idaho", "kuna", "metropolitan", "nearly", "percent", "population".
adaadditionalboiseidahokunametropolitannearlypercentpopulation
Kuna ( KYOO-nə) is a city in Ada County, Idaho. It is part of the Boise metropolitan area. The population was 24,011 at the time of the 2020 census. Kuna is one of the fastest-growing areas in Idaho, having nearly tripled in population between 2000 and 2010 and a nearly additional 60 percent gain between 2010 and 2020.
History Kuna originated as a railroad stop with coach transport to Boise. It is popularly believed, as cited by the Kuna Chamber of Commerce, that the translation of the name "Kuna" means "the end of the trail", but Charles S. Walgamott cites the origin of the name as a Shoshone Indian word meaning "green leaf, good to smoke." The Western Heritage Historic Byway, designated as a national as well as a state scenic byway, travels around a number of historic sites in the area. Geography Kuna's business center is approximately 18 miles (29 km) southwest of downtown Boise, the state capital. According to the United States Census Bureau, the city has a total area of 18.18 square miles (47.09 km2), of which 18.08 square miles (46.83 km2) is land and 0.10 square miles (0.26 km2) is water. South of Kuna is the Kuna Caves, a lava tube. A small seasonal creek, Indian Creek, runs through the city. It is now used as an irrigation canal, filled by the New York Canal from the Boise River Diversion Dam.
Geography Kuna's business center is approximately 18 miles (29 km) southwest of downtown Boise, the state capital. According to the United States Census Bureau, the city has a total area of 18.18 square miles (47.09 km2), of which 18.08 square miles (46.83 km2) is land and 0.10 square miles (0.26 km2) is water. South of Kuna is the Kuna Caves, a lava tube. A small seasonal creek, Indian Creek, runs through the city. It is now used as an irrigation canal, filled by the New York Canal from the Boise River Diversion Dam. One of the few small floatable waterways in the region, Indian Creek is a favorite swimming spot for local residents. Demographics 2020 census As of the 2020 census, Kuna had a population of 24,011. The median age was 30.9 years. 31.8% of residents were under the age of 18 and 8.1% of residents were 65 years of age or older. For every 100 females there were 97.8 males, and for every 100 females age 18 and over there were 96.2 males age 18 and over. 97.1% of residents lived in urban areas, while 2.9% lived in rural areas. There were 7,736 households in Kuna, of which 48.2% had children under the age of 18 living in them. Of all households, 62.3% were married-couple households, 11.6% were households with a male householder and no spouse or partner present, and 17.4% were households with a female householder and no spouse or partner present. About 13.9% of all households were made up of individuals and 4.6% had someone living alone who was 65 years of age or older. There were 7,948 housing units, of which 2.7% were vacant. The homeowner vacancy rate was 0.8% and the rental vacancy rate was 5.9%. As of the 2020 census, the median income for a household in the city was $68,017. Families had a median income of $75,296 versus $91,364 for married-couple families and $33,512 for nonfamily households.
Canyon County, Idaho
Q486078 QID OVERLAP 0.680
QID OVERLAP: Q486078 in land_use_planning (tier:branch) and energy_utilities (tier:branch). | SHARED TOKENS (9): "boise", "caldwell", "canyon", "idaho", "largest", "making", "metropolitan", "nampa", "population".
boisecaldwellcanyonidaholargestmakingmetropolitannampapopulation
105, which by 2025 was estimated to have risen to 275,123, making it the second-most populous county in Idaho. The county seat is Caldwell, and its largest city is Nampa. Canyon County is part of the Boise metropolitan area. History Hudson's Bay Company established Fort Boise in 1834 near what is now Parma, but abandoned it in 1855. Emigrants traveled through Canyon County on the Oregon Trail. Discovery of gold in the Boise Basin in 1862 brought settlement to the region again. The lower Boise River was fully contained within Boise County from 1863 until the formation of Ada County in 1864. Settlement of the lower Boise River west of Boise City was limited prior to the completion of the Oregon Short Line Railroad. Middleton was the first European settlement of Canyon County, starting in 1863. The 1870 Census for Ada County listed 76 residents of the Boise Valley, excluding Boise City and the 1880 Census listed 44 residents at Middleton. The arrival of the railroad at Caldwell led to the establishment of a town there as of August 1883. Businessmen James A. McGee and Alexander Duffes filed the plat for nearby Nampa in 1886. Parma was settled around the same time, with the Old Fort Boise post office being moved to the town's location; it was incorporated in 1904. Ada County established precincts for each of the settlements with a combined 1890 Census population of 2,311. Significant settlement of Greenleaf and Notus started around 1904 with the two settlements listed as precincts at the 1910 census. Notus was incorporated in 1921 while Greenleaf was incorporated prior to 1980. Melba was incorporated in 1912 while Wilder was incorporated in 1919. The City of Star annexed a portion of territory in northeast Canyon County prior to 2007, becoming the county's ninth incorporated city. The majority of Star is located within Ada County. The Idaho Legislature created Canyon County from Ada County in an act approved March 7, 1891, effective at the November 26, 1892, election. Caldwell was established as the county seat. The county originally contained all of Canyon and Payette counties and part of Gem; Gem County formed in 1915 and Payette County in 1917.
History Hudson's Bay Company established Fort Boise in 1834 near what is now Parma, but abandoned it in 1855. Emigrants traveled through Canyon County on the Oregon Trail. Discovery of gold in the Boise Basin in 1862 brought settlement to the region again. The lower Boise River was fully contained within Boise County from 1863 until the formation of Ada County in 1864. Settlement of the lower Boise River west of Boise City was limited prior to the completion of the Oregon Short Line Railroad. Middleton was the first European settlement of Canyon County, starting in 1863. The 1870 Census for Ada County listed 76 residents of the Boise Valley, excluding Boise City and the 1880 Census listed 44 residents at Middleton. The arrival of the railroad at Caldwell led to the establishment of a town there as of August 1883. Businessmen James A. McGee and Alexander Duffes filed the plat for nearby Nampa in 1886. Parma was settled around the same time, with the Old Fort Boise post office being moved to the town's location; it was incorporated in 1904. Ada County established precincts for each of the settlements with a combined 1890 Census population of 2,311. Significant settlement of Greenleaf and Notus started around 1904 with the two settlements listed as precincts at the 1910 census. Notus was incorporated in 1921 while Greenleaf was incorporated prior to 1980. Melba was incorporated in 1912 while Wilder was incorporated in 1919. The City of Star annexed a portion of territory in northeast Canyon County prior to 2007, becoming the county's ninth incorporated city. The majority of Star is located within Ada County. The Idaho Legislature created Canyon County from Ada County in an act approved March 7, 1891, effective at the November 26, 1892, election. Caldwell was established as the county seat. The county originally contained all of Canyon and Payette counties and part of Gem; Gem County formed in 1915 and Payette County in 1917.
2000 census As of the 2000 census, there were 131,441 people, 45,018 households and 33,943 families living in the county. The population density was 223 people per square mile (86 people/km2). There were 47,965 housing units at an average density of 81 units per square mile (31 units/km2). The racial makeup of the county was 83.10% White, 0.32% Black or African American, 0.85% Native American, 0.80% Asian, 0.13% Pacific Islander, 12.17% from other races, and 2.62% from two or more races. Hispanic or Latino of any race were 18.61% of the population. 15.9% were of German, 12.7% English, 10.3% American and 7.6% Irish ancestry. There were 45,018 households, of which 39.80% had children under the age of 18 living with them, 60.70% were married couples living together, 10.10% had a female householder with no husband present, and 24.60% were non-families. 19.80% of all households were made up of individuals, and 8.40% had someone living alone who was 65 years of age or older. The average household size was 2.85 and the average family size was 3.28. 30.90% of the population were under the age of 18, 10.70% from 18 to 24, 28.30% from 25 to 44, 19.10% from 45 to 64, and 11.00% who were 65 years of age or older. The median age was 30 years. For every 100 females, there were 98.70 males. For every 100 females age 18 and over, there were 96.30 males. The median household income was $35,884 and the median family income was $40,377. Males had a median income of $29,418 compared with $22,044 for females. The per capita income for the county was $15,155. About 8.70% of families and 12.00% of the population were below the poverty line, including 14.50% of those under age 18 and 10.70% of those age 65 or over. Communities Cities Unincorporated communities Bowmont Huston Roswell Sunnyslope Walters Ferry, Idaho Politics Like the majority of Idaho, Canyon County is reliably Republican by comfortable margins. The last time a Democratic candidate carried the county was in 1936 by Franklin D. Roosevelt.
Caldwell, Idaho
Q849592 QID OVERLAP 0.680
QID OVERLAP: Q849592 in land_use_planning (tier:branch) and energy_utilities (tier:branch). | SHARED TOKENS (9): "approximately", "boise", "caldwell", "canyon", "college", "idaho", "locally", "metropolitan", "population".
approximatelyboisecaldwellcanyoncollegeidaholocallymetropolitanpopulation
city in Idaho. As of the 2020 census, Caldwell had a population of 59,996. Caldwell is considered part of the Boise metropolitan area, and is the location of the College of Idaho. The city is located approximately 24 miles (39 km) west of Boise, and approximately 17 miles (27 km) east of the Oregon border. History The present-day location of Caldwell is along a natural passageway to the Inland and Pacific Northwest. Native American tribes from the west coast, north Idaho and as far away as Colorado came to the banks of the Boise River for annual trading fairs, or rendezvous. European and some Hawaiian explorers and traders soon followed the paths left by Native Americans and hopeful emigrants later forged the Oregon Trail and followed those paths to seek a better life in the Oregon Territory. Pioneers of the Trail traveled along the Boise River to Canyon Hill and forded the river close to the Silver Bridge on Plymouth Street. During the Civil War, the discovery of gold in Idaho's mountains brought a variety of new settlers into the area. Many never made it to the mines but settled along the Boise River and run ferries, stage stations, and freighting businesses. These early entrepreneurs created small ranches and farms in the river valleys. Caldwell's inception occurred largely as a result of the construction of the Oregon Short Line Railroad, which connected Wyoming to Oregon through Idaho. Robert E. Strahorn came to the Boise River Valley in 1883 to select a route for the railroad. He rejected the grade into Boise City as too steep and chose a site 30 miles to the west. He drove a stake into an alkali flat of sagebrush and greasewood and the City of Caldwell was platted. Caldwell was named after one of Strahorn's business partners, Alexander Caldwell, a former senator from Kansas. When Caldwell was platted in August 1883, its founder, the Idaho and Oregon Land Improvement Company, started persuading settlers and businessmen to move to the area. Within four months, Caldwell had 600 residents living in 150 dwellings, 40 businesses, a school, a telephone exchange, and two newspapers. On January 15, 1890, the Board of Commissioners of Ada County issued a handwritten order incorporating the City of Caldwell. The College of Idaho was founded in Caldwell in 1891. In 1892, Canyon County was established from a portion of Ada County, and Caldwell was named the county seat. Irrigation canals and waterways were constructed throughout Canyon County, providing the foundation for an agricultural economy. The Oregon Short Line Railroad became part of the larger Union Pacific Railroad network and in 1906 the Caldwell freight and passenger depot was constructed. Caldwell experienced moderate growth as an agricultural processing, commercial retail and educational center during the 20th century. In 2009, the City of Caldwell completed a revitalization project to restore Indian Creek, which runs through downtown Caldwell, but had been used for sewage disposal by local industries and been covered over.
History The present-day location of Caldwell is along a natural passageway to the Inland and Pacific Northwest. Native American tribes from the west coast, north Idaho and as far away as Colorado came to the banks of the Boise River for annual trading fairs, or rendezvous. European and some Hawaiian explorers and traders soon followed the paths left by Native Americans and hopeful emigrants later forged the Oregon Trail and followed those paths to seek a better life in the Oregon Territory. Pioneers of the Trail traveled along the Boise River to Canyon Hill and forded the river close to the Silver Bridge on Plymouth Street. During the Civil War, the discovery of gold in Idaho's mountains brought a variety of new settlers into the area. Many never made it to the mines but settled along the Boise River and run ferries, stage stations, and freighting businesses. These early entrepreneurs created small ranches and farms in the river valleys. Caldwell's inception occurred largely as a result of the construction of the Oregon Short Line Railroad, which connected Wyoming to Oregon through Idaho. Robert E. Strahorn came to the Boise River Valley in 1883 to select a route for the railroad. He rejected the grade into Boise City as too steep and chose a site 30 miles to the west. He drove a stake into an alkali flat of sagebrush and greasewood and the City of Caldwell was platted. Caldwell was named after one of Strahorn's business partners, Alexander Caldwell, a former senator from Kansas. When Caldwell was platted in August 1883, its founder, the Idaho and Oregon Land Improvement Company, started persuading settlers and businessmen to move to the area. Within four months, Caldwell had 600 residents living in 150 dwellings, 40 businesses, a school, a telephone exchange, and two newspapers. On January 15, 1890, the Board of Commissioners of Ada County issued a handwritten order incorporating the City of Caldwell. The College of Idaho was founded in Caldwell in 1891. In 1892, Canyon County was established from a portion of Ada County, and Caldwell was named the county seat. Irrigation canals and waterways were constructed throughout Canyon County, providing the foundation for an agricultural economy. The Oregon Short Line Railroad became part of the larger Union Pacific Railroad network and in 1906 the Caldwell freight and passenger depot was constructed. Caldwell experienced moderate growth as an agricultural processing, commercial retail and educational center during the 20th century. In 2009, the City of Caldwell completed a revitalization project to restore Indian Creek, which runs through downtown Caldwell, but had been used for sewage disposal by local industries and been covered over.
location of the College of Idaho. The city is located approximately 24 miles (39 km) west of Boise, and approximately 17 miles (27 km) east of the Oregon border. History The present-day location of Caldwell is along a natural passageway to the Inland and Pacific Northwest. Native American tribes from the west coast, north Idaho and as far away as Colorado came to the banks of the Boise River for annual trading fairs, or rendezvous. European and some Hawaiian explorers and traders soon followed the paths left by Native Americans and hopeful emigrants later forged the Oregon Trail and followed those paths to seek a better life in the Oregon Territory. Pioneers of the Trail traveled along the Boise River to Canyon Hill and forded the river close to the Silver Bridge on Plymouth Street. During the Civil War, the discovery of gold in Idaho's mountains brought a variety of new settlers into the area. Many never made it to the mines but settled along the Boise River and run ferries, stage stations, and freighting businesses. These early entrepreneurs created small ranches and farms in the river valleys. Caldwell's inception occurred largely as a result of the construction of the Oregon Short Line Railroad, which connected Wyoming to Oregon through Idaho. Robert E. Strahorn came to the Boise River Valley in 1883 to select a route for the railroad. He rejected the grade into Boise City as too steep and chose a site 30 miles to the west. He drove a stake into an alkali flat of sagebrush and greasewood and the City of Caldwell was platted. Caldwell was named after one of Strahorn's business partners, Alexander Caldwell, a former senator from Kansas. When Caldwell was platted in August 1883, its founder, the Idaho and Oregon Land Improvement Company, started persuading settlers and businessmen to move to the area. Within four months, Caldwell had 600 residents living in 150 dwellings, 40 businesses, a school, a telephone exchange, and two newspapers. On January 15, 1890, the Board of Commissioners of Ada County issued a handwritten order incorporating the City of Caldwell. The College of Idaho was founded in Caldwell in 1891. In 1892, Canyon County was established from a portion of Ada County, and Caldwell was named the county seat. Irrigation canals and waterways were constructed throughout Canyon County, providing the foundation for an agricultural economy. The Oregon Short Line Railroad became part of the larger Union Pacific Railroad network and in 1906 the Caldwell freight and passenger depot was constructed. Caldwell experienced moderate growth as an agricultural processing, commercial retail and educational center during the 20th century. In 2009, the City of Caldwell completed a revitalization project to restore Indian Creek, which runs through downtown Caldwell, but had been used for sewage disposal by local industries and been covered over.
Meridian, Idaho
Q1085274 QID OVERLAP 0.660
QID OVERLAP: Q1085274 in land_use_planning (tier:branch) and energy_utilities (tier:branch). | SHARED TOKENS (8): "ada", "among", "boise", "capital", "idaho", "making", "meridian", "population".
adaamongboisecapitalidahomakingmeridianpopulation
Meridian is a city located in Ada County, Idaho, United States. The population was 117,635 at the 2020 census, making it the second most populous city in the county and Idaho, after Boise, the state capital.
Rail transportation (1908–28) Following the raising of $4,000 to lay the Interurban rail line from Onweiler (Meridian and Ustick Roads), the tracks were completed into the village center. Turning east on Broadway and ending at East Second, the last car would spend the night in Meridian before returning to Boise early the next morning with passengers and freight. The interurban Station and Generator building (west one-third of the old library at Meridian and Idaho Streets) was built in 1912, and the line continued on to Nampa via Meridian. The tracks down Broadway were not used after 1912. The Interurban Company entered into receivership and closed in 1928 after 20 years of providing continuous transportation to neighboring towns. It was Meridian's main connection to the area outside the local community. The Union Pacific Railroad spur opened in 1900 and is currently operated by the Boise Valley Railroad. Many industrial customers continue to ship forest, agricultural, and chemical products along this corridor. Creamery (1929–70) The city's official website describes the history of the Ada County Dairymen's cooperative creamery as follows:The lowest days of the Great Depression brightened for area dairymen when the Ada County Dairymen's cooperative creamery began operation in 1929. It provided milk checks to those who were members of the cooperative, enabling them to pay their taxes and provide food for their families. Other community members hauled milk to the creamery and were employed by the creamery, whose product was Challenge Butter. The creamery ran seven days a week for 40 years. Additions and improvements were made while the plant was in full operation. Later years saw the Wyeth Laboratories affiliate with the creamery to manufacture SMA baby formula.
Creamery (1929–70) The city's official website describes the history of the Ada County Dairymen's cooperative creamery as follows:The lowest days of the Great Depression brightened for area dairymen when the Ada County Dairymen's cooperative creamery began operation in 1929. It provided milk checks to those who were members of the cooperative, enabling them to pay their taxes and provide food for their families. Other community members hauled milk to the creamery and were employed by the creamery, whose product was Challenge Butter. The creamery ran seven days a week for 40 years. Additions and improvements were made while the plant was in full operation. Later years saw the Wyeth Laboratories affiliate with the creamery to manufacture SMA baby formula.
Snake River Plain
Q1396049 QID OVERLAP 0.640
QID OVERLAP: Q1396049 in land_use_planning (tier:branch) and energy_utilities (tier:evergreen). | SHARED TOKENS (7): "agricultural", "idaho", "land", "largest", "major", "river", "southern".
agriculturalidaholandlargestmajorriversouthern
rs about a quarter of Idaho. Three major volcanic buttes dot the plain east of Arco, the largest being Big Southern Butte. Most of Idaho's major cities are in the Snake River Plain, as is much of its agricultural land. Geology The Snake River Plain can be divided into three sections: western, central, and eastern. The western Snake River Plain is a large tectonic graben or rift valley filled with several kilometers of Lake Idaho sediments; the sediments are underlain by rhyolite and basalt, and overlain by basalt. The western plain began to form around 11–12 Ma (million years ago) with the eruption of rhyolite lavas and ignimbrites. The western plain is not parallel to North American Plate motion and lies at a high angle to the central and eastern Snake River Plain.
The Snake River Plain is a geologic feature located primarily within the U.S. state of Idaho. It stretches about 400 miles (640 km) westward from northwest of the state of Wyoming to the Idaho-Oregon border. The plain is a wide, flat bow-shaped depression and covers about a quarter of Idaho.
The Snake River Plain can be divided into three sections: western, central, and eastern. The western Snake River Plain is a large tectonic graben or rift valley filled with several kilometers of Lake Idaho sediments; the sediments are underlain by rhyolite and basalt, and overlain by basalt. The western plain began to form around 11–12 Ma (million years ago) with the eruption of rhyolite lavas and ignimbrites. The western plain is not parallel to North American Plate motion and lies at a high angle to the central and eastern Snake River Plain.
Eagle, Idaho
Q1516870 QID OVERLAP 0.620
QID OVERLAP: Q1516870 in land_use_planning (tier:branch) and energy_utilities (tier:branch). | SHARED TOKENS (6): "ada", "boise", "downtown", "eagle", "idaho", "population".
adaboisedowntowneagleidahopopulation
Eagle is a city in Ada County, Idaho, ten miles (16 km) northwest of downtown Boise. The population was 30,346 at the 2020 census. History 19th century Eagle Island in Idaho was settled in 1863 by Truman Coe Catlin, who later shifted from crop farming to dairy farming, starting the island's dairy tradition. He also pioneered irrigation in the area by constructing a wide irrigation ditch. The most notable early community developer was Thomas Hugh Aiken, a Canadian surveyor, who helped establish the Eagle community in the 1870s.
Parks and recreation The city features numerous parks, including Arboretum Park, Friendship Park, Heritage Park, Orval Krasen Park, Reid W. Merrill Sr. Community Park, and Stephen C. Guerber Park, among others. The Parks and Recreation department offers youth sports leagues, camps, special events (such as Eagle Fun Days), and maintains extensive trails. Nearby Eagle Island State Park provides a swimming beach, trails, disc golf, and winter sports. Education Most of Eagle is in the West Ada School District, with a small portion in the Boise School District.
20th century The Eagle Fish Hatchery, established in the late 1940s in Idaho, was originally part of a trout program until the 1980s. In 1991, it was restructured to support the conservation of Snake River sockeye salmon, an endangered species listed that year. The hatchery's mission shifted to preserving the species and its genetic diversity through the development of eight broodstocks derived from smolts, anadromous adults, and residual populations.
◈ Cross-Vertical Edge Ledger
All Additional Edges — Deterministic Matching
202 EDGES
◈ ADDITIONAL CROSS EDGES · NON-OVERLAP202 edges
🌲 EVERGREEN2 edges
0.650
adaapproximatelyboisecanalcanalscanyoncapacityfarmlandfeetidahoirrigationmultipleriversourcedsystemtreasurevalleywaterwestern
SHARED TOKENS (19): "ada", "approximately", "boise", "canal", "canals", "canyon", "capacity", "farmland", "feet", "idaho", "irrigation", "multiple", "river", "sourced", "system", "treasure", "valley", "water", "western". | URL->B (1): https://www.usbr.gov/projects/index.php?id=338. | EXACT TITLE in energy_utilities: "New York Canal".
0.610
commissionidahomunicipalitiesoperatedownedpowerprovidepublicregulateregulatesutilitiesutilitywater
SHARED TOKENS (13): "commission", "idaho", "municipalities", "operated", "owned", "power", "provide", "public", "regulate", "regulates", "utilities", "utility", "water". | URL->B (1): https://puc.idaho.gov/. | EXACT TITLE in energy_utilities: "Idaho Public Utilities Commission".
🌿 BRANCH172 edges
0.550
Electrician ↗ Q165029 EXACT TITLE
buildingscablecomponentsdataelectricalinfrastructurelinesplatformsrelatedrepair
SHARED TOKENS (10): "buildings", "cable", "components", "data", "electrical", "infrastructure", "lines", "platforms", "related", "repair". | URL->B (1): http://www.bls.gov/ooh/construction-and-extraction/electricians.htm. | EXACT TITLE in energy_utilities: "Electrician".
0.500
amongapproximatelyboisedivisionextensionfallsidahooperatesproductionprofessionalpublicresearchruralschoolsstudentsuniversity
SHARED TOKENS (16): "among", "approximately", "boise", "division", "extension", "falls", "idaho", "operates", "production", "professional", "public", "research", "rural", "schools", "students", "university". | EXACT TITLE in land_use_planning: "University of Idaho".
0.500
Well ↗ Q43483 EXACT TITLE
anotheraquiferclassesconstructedconstructioncontainscreateenvironmentalfallsgroundwaterpotentialproviderequireresourcesruralsitesoilstructuresupplytreatment
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0.500
Tariff ↗ EXACT TITLE
againstamericanamongbarriersconsumercostsdesigneddistributedeconomiceconomyfallsformgrowthinstrumentsintendedlocalmaterialsmeansnationalpolicy
SHARED TOKENS (33): "against", "american", "among", "barriers", "consumer", "costs", "designed", "distributed", "economic", "economy", "falls", "form", "growth", "instruments", "intended", "local", "materials", "means", "national", "policy".... | EXACT TITLE in energy_utilities: "Tariff".
0.500
Project finance ↗ EXACT TITLE
addressagreementsallocationamongassetsassociatedcapitalcommitmentsconstructioncontractscontrolcorporatedeliverydesigningdevelopmentdistributedeconomicentityenvironmentalfinance
SHARED TOKENS (51): "address", "agreements", "allocation", "among", "assets", "associated", "capital", "commitments", "construction", "contracts", "control", "corporate", "delivery", "designing", "development", "distributed", "economic", "entity", "environmental", "finance".... | EXACT TITLE in land_use_planning: "Project finance".
0.500
Cartography ↗ Q42515 EXACT TITLE
boundariesdesigngisinformationlandmakingmapmediamodeledphysicalreduceroadssetstudysystems
SHARED TOKENS (15): "boundaries", "design", "gis", "information", "land", "making", "map", "media", "modeled", "physical", "reduce", "roads", "set", "study", "systems". | EXACT TITLE in land_use_planning: "Cartography".
0.500
activitiesactivityagenciescommunitydistributioneconomicevenforecastingformalgrowthinformationintensityland-usemetropolitanmodelmodelingmodelsneedorganizationsplanning
SHARED TOKENS (35): "activities", "activity", "agencies", "community", "distribution", "economic", "even", "forecasting", "formal", "growth", "information", "intensity", "land-use", "metropolitan", "model", "modeling", "models", "need", "organizations", "planning".... | EXACT TITLE in land_use_planning: "Land-use forecasting".
0.500
Idaho ↗ EXACT TITLE
agriculturalagricultureapproximatelyassociatedboisecapitalcontainsdistincteasterneconomyidahoisolatedlandlargestmillionnationalofficialpopulationrestriver
SHARED TOKENS (28): "agricultural", "agriculture", "approximately", "associated", "boise", "capital", "contains", "distinct", "eastern", "economy", "idaho", "isolated", "land", "largest", "million", "national", "official", "population", "rest", "river".... | EXACT TITLE in land_use_planning: "Idaho". | EXACT TITLE in energy_utilities: "Idaho".
0.500
analysisanotherapplicationsbroaderbusinessdatadefinitionecologyengineeringfoundationgeographygisindexinformationinstitutionalintegratedknowledgemanagementmultiplenatural
SHARED TOKENS (35): "analysis", "another", "applications", "broader", "business", "data", "definition", "ecology", "engineering", "foundation", "geography", "gis", "index", "information", "institutional", "integrated", "knowledge", "management", "multiple", "natural".... | EXACT TITLE in land_use_planning: "Geographic information system".
0.500
centralizedcollectioncommunitycomponentsconventionaldecentralizeddifferentdistributeddistributiondistrictelectricalenvironmentalincreasinglyintegrationmajormakesmeansmultiplenetworkpower
SHARED TOKENS (31): "centralized", "collection", "community", "components", "conventional", "decentralized", "different", "distributed", "distribution", "district", "electrical", "environmental", "increasingly", "integration", "major", "makes", "means", "multiple", "network", "power".... | EXACT TITLE in energy_utilities: "Distributed generation".
0.500
Natural gas ↗ Q40858 EXACT TITLE
adoptionalongsideassessmentassetschainchangecommercialdemandfeetfootprintgenerallyinfrastructurelargestlayerslong-termmajornaturalpipelinespressureprocesses
SHARED TOKENS (26): "adoption", "alongside", "assessment", "assets", "chain", "change", "commercial", "demand", "feet", "footprint", "generally", "infrastructure", "largest", "layers", "long-term", "major", "natural", "pipelines", "pressure", "processes".... | EXACT TITLE in energy_utilities: "Natural gas".
0.500
Zoning ↗ Q702232 EXACT TITLE
activitiesallowingbuildingbuildingsdeterminedevelopmentdifferentformgoverngovernmentsgrowthindustriallandland-uselocalplanningpolicyprocedurepropertyquestion
SHARED TOKENS (31): "activities", "allowing", "building", "buildings", "determine", "development", "different", "form", "govern", "governments", "growth", "industrial", "land", "land-use", "local", "planning", "policy", "procedure", "property", "question".... | EXACT TITLE in land_use_planning: "Zoning". | EXACT TITLE in energy_utilities: "Zoning".
0.500
Pipeline ↗ Q25471856 EXACT TITLE
canalsconstructedconstructiondesignenvironmentalevenirrigationmarketmaterialsmillionmovenaturalnetworkpipelinepipelinesplannedplanningpressureprojectssystem
SHARED TOKENS (24): "canals", "constructed", "construction", "design", "environmental", "even", "irrigation", "market", "materials", "million", "move", "natural", "network", "pipeline", "pipelines", "planned", "planning", "pressure", "projects", "system".... | EXACT TITLE in land_use_planning: "Pipeline". | EXACT TITLE in energy_utilities: "Pipeline".
0.500
actadministrationappliesapplyenvironmentalfederalintendedlawprivateprotectionpublicqualityregulatedsafeservedsetstandardssystemsystemswater
SHARED TOKENS (21): "act", "administration", "applies", "apply", "environmental", "federal", "intended", "law", "private", "protection", "public", "quality", "regulated", "safe", "served", "set", "standards", "system", "systems", "water".... | EXACT TITLE in energy_utilities: "Safe Drinking Water Act".
0.500
centralizedcommercialcomponentsdistributionfireindustrialinfrastructurenetworkrequirementsresidentialsupplysystemtreatmentwaterwells
SHARED TOKENS (15): "centralized", "commercial", "components", "distribution", "fire", "industrial", "infrastructure", "network", "requirements", "residential", "supply", "system", "treatment", "water", "wells". | EXACT TITLE in energy_utilities: "Water distribution system".
0.500
activitiesaddressadministrativebroaderdevelopmenteconomicenvironmentalfarmlandgrowthindividualindustrialinfrastructurelandland-usemanagementnationalnetworkplacementplanningplans
SHARED TOKENS (32): "activities", "address", "administrative", "broader", "development", "economic", "environmental", "farmland", "growth", "individual", "industrial", "infrastructure", "land", "land-use", "management", "national", "network", "placement", "planning", "plans".... | EXACT TITLE in land_use_planning: "Regional planning". | EXACT TITLE in energy_utilities: "Regional planning".
0.500
becomecapacitychangecleancompetitivecostcurrentenvironmentalevenexpansionfinancialincreaseinternationallandlargelocalmajormakingmovenatural
SHARED TOKENS (36): "become", "capacity", "change", "clean", "competitive", "cost", "current", "environmental", "even", "expansion", "financial", "increase", "international", "land", "large", "local", "major", "making", "move", "natural".... | EXACT TITLE in energy_utilities: "Renewable energy".
0.500
Journeyman ↗ Q582096 EXACT TITLE
becomebuildingbusinesseducationevaluationexperiencefieldgenerallyindividuallicensemeaningofficialprotectpublictradeworkworkersyet
SHARED TOKENS (18): "become", "building", "business", "education", "evaluation", "experience", "field", "generally", "individual", "license", "meaning", "official", "protect", "public", "trade", "work", "workers", "yet". | EXACT TITLE in energy_utilities: "Journeyman".
0.500
Dam ↗ Q12323 EXACT TITLE
additionalapplicationbuildingbuiltcleanconstructiondesigndesigningengineeringfloodfunctionsgoverninghazardhouseholdincreaseindustrialirrigatedirrigationlandlarge
SHARED TOKENS (41): "additional", "application", "building", "built", "clean", "construction", "design", "designing", "engineering", "flood", "functions", "governing", "hazard", "household", "increase", "industrial", "irrigated", "irrigation", "land", "large".... | EXACT TITLE in land_use_planning: "Dam". | EXACT TITLE in energy_utilities: "Dam".
0.500
activityanalysisanotherassociatedbuildingbuildingscentralchangescontroldesigndevelopmentdifferentenvironmentalfieldformformationfunctionsgeographyincreasinglymaintain
SHARED TOKENS (35): "activity", "analysis", "another", "associated", "building", "buildings", "central", "changes", "control", "design", "development", "different", "environmental", "field", "form", "formation", "functions", "geography", "increasingly", "maintain".... | EXACT TITLE in land_use_planning: "Urban morphology".
0.500
actualannualcapacitycommercialcostdemandelectricalevenexpectedindividualindustrialmanagementoperatingpowerrepresentssinglesupplyutilitiesutility
SHARED TOKENS (19): "actual", "annual", "capacity", "commercial", "cost", "demand", "electrical", "even", "expected", "individual", "industrial", "management", "operating", "power", "represents", "single", "supply", "utilities", "utility". | EXACT TITLE in energy_utilities: "Peak demand".
0.500
agenciesarchitectureconstructioncontroldesignengineeringenvironmentalerosionestateexpertiseinfrastructurelicenselicensedlicensesmanagementparksplanningprivateprocessesproduce
SHARED TOKENS (30): "agencies", "architecture", "construction", "control", "design", "engineering", "environmental", "erosion", "estate", "expertise", "infrastructure", "license", "licensed", "licenses", "management", "parks", "planning", "private", "processes", "produce".... | EXACT TITLE in land_use_planning: "Landscape architecture".
0.500
Heat pump ↗ Q131313 EXACT TITLE
adoptionalternativesanotherbuildingchangecostdependsdesigneddistrictefficiencyelectricalfallsfootprintgroundmeansmillionmodelsmovenaturalneed
SHARED TOKENS (34): "adoption", "alternatives", "another", "building", "change", "cost", "depends", "designed", "district", "efficiency", "electrical", "falls", "footprint", "ground", "means", "million", "models", "move", "natural", "need".... | EXACT TITLE in energy_utilities: "Heat pump".
0.500
adaboisebuiltbureaucanalcanyoncountiesengineersidahoirrigationoperatedreclamationrivertreasurevalleywaterwestern
SHARED TOKENS (17): "ada", "boise", "built", "bureau", "canal", "canyon", "counties", "engineers", "idaho", "irrigation", "operated", "reclamation", "river", "treasure", "valley", "water", "western". | EXACT TITLE in energy_utilities: "Boise River Diversion Dam".
0.500
actalternativesamericanapplicableappliedassessmentassociationauthoritycentralchangechangescommunityconservationcostscreatingdefinitiondependdependsdesigndevelopment
SHARED TOKENS (47): "act", "alternatives", "american", "applicable", "applied", "assessment", "association", "authority", "central", "change", "changes", "community", "conservation", "costs", "creating", "definition", "depend", "depends", "design", "development".... | EXACT TITLE in land_use_planning: "Land-use planning".
0.500
Substation ↗ Q174814 EXACT TITLE
approximatelycentralchangecommercialconnectedconsumercontroldifferentdistributionelectricalfunctionsgenerallyindustrialinfrastructurelargeoperatedownedpowersmallersupply
SHARED TOKENS (22): "approximately", "central", "change", "commercial", "connected", "consumer", "control", "different", "distribution", "electrical", "functions", "generally", "industrial", "infrastructure", "large", "operated", "owned", "power", "smaller", "supply".... | EXACT TITLE in energy_utilities: "Substation".
0.500
boundariescasescertificationcompetencecompletefieldformallicenseoutsideplacementpotentialprofessionalregulatedstudysystemtradetraining
SHARED TOKENS (17): "boundaries", "cases", "certification", "competence", "complete", "field", "formal", "license", "outside", "placement", "potential", "professional", "regulated", "study", "system", "trade", "training". | EXACT TITLE in energy_utilities: "Apprenticeship".
0.500
Lineworker ↗ Q691225 EXACT TITLE
buildingscommercialdistributionelectricalemergencyfacilitiesgenerallygroundindustrialinsidelinesmaintainmaintainsresidentialwork
SHARED TOKENS (15): "buildings", "commercial", "distribution", "electrical", "emergency", "facilities", "generally", "ground", "industrial", "inside", "lines", "maintain", "maintains", "residential", "work". | EXACT TITLE in energy_utilities: "Lineworker".
0.500
alongsideamericancapacitycapitalconnectingconventionalcorridorscostdesigndesignedflexibilityintegratelargestmillionnetworkprioritypublicqualityrapidreduce
SHARED TOKENS (25): "alongside", "american", "capacity", "capital", "connecting", "conventional", "corridors", "cost", "design", "designed", "flexibility", "integrate", "largest", "million", "network", "priority", "public", "quality", "rapid", "reduce".... | EXACT TITLE in land_use_planning: "Bus rapid transit".
0.500
activitiesagenciesagriculturalassessmentdesigneddevelopmentdifferentdistrictseasementseducationfarmlandfuturegovernmentsjointlandlocalnationaloperatedoperationalorganizations
SHARED TOKENS (34): "activities", "agencies", "agricultural", "assessment", "designed", "development", "different", "districts", "easements", "education", "farmland", "future", "governments", "joint", "land", "local", "national", "operated", "operational", "organizations".... | EXACT TITLE in land_use_planning: "Farmland preservation".
0.500
analysisappliedcurrentdatadesigndifferentengineeringformformallargeplacementpropertiesresearchroutescalestructuresstudiesstudyurban
SHARED TOKENS (19): "analysis", "applied", "current", "data", "design", "different", "engineering", "form", "formal", "large", "placement", "properties", "research", "route", "scale", "structures", "studies", "study", "urban". | EXACT TITLE in land_use_planning: "Spatial analysis".
0.500
againstanalysisassessmentbroaderbuildingchangechangescontrolengineeringeventsexposurefloodincreaseindividualinfrastructureintensitymanagementmeasuresnaturalphysically
SHARED TOKENS (34): "against", "analysis", "assessment", "broader", "building", "change", "changes", "control", "engineering", "events", "exposure", "flood", "increase", "individual", "infrastructure", "intensity", "management", "measures", "natural", "physically".... | EXACT TITLE in land_use_planning: "Flood management".
0.500
Urban design ↗ Q63100 EXACT TITLE
architecturebuildingscommunityconnectdesigndesigningeconomicenvironmentallocalpagephysicalplanningprocessesprojectpublicregionalrelatedstreetthemurban
SHARED TOKENS (21): "architecture", "buildings", "community", "connect", "design", "designing", "economic", "environmental", "local", "page", "physical", "planning", "processes", "project", "public", "regional", "related", "street", "them", "urban".... | EXACT TITLE in land_use_planning: "Urban design".
0.500
agenciesamericanbureaubusinessesconductscoordinationcurrentdatadepartmenteconomiceconomicsfederalfieldgovernmentslocalmaintainmajormanagementneedoffice
SHARED TOKENS (29): "agencies", "american", "bureau", "businesses", "conducts", "coordination", "current", "data", "department", "economic", "economics", "federal", "field", "governments", "local", "maintain", "major", "management", "need", "office".... | EXACT TITLE in energy_utilities: "Bureau of Labor Statistics".
0.500
activitycomplianceenforcementevenformgroundwaterhazardousindustrialmakingmunicipaloperationsprocessprocessessoilwaterwaters
SHARED TOKENS (16): "activity", "compliance", "enforcement", "even", "form", "groundwater", "hazardous", "industrial", "making", "municipal", "operations", "process", "processes", "soil", "water", "waters". | EXACT TITLE in energy_utilities: "Industrial waste".
0.500
administrationadministrativeagenciesdepartmentdistrictfederalfinancialfunctionsgrantslocalmaintainofficeoperatorsprogramsproviderspublicregionalrequirementsstatutorysystems
SHARED TOKENS (23): "administration", "administrative", "agencies", "department", "district", "federal", "financial", "functions", "grants", "local", "maintain", "office", "operators", "programs", "providers", "public", "regional", "requirements", "statutory", "systems".... | EXACT TITLE in land_use_planning: "Federal Transit Administration".
0.500
assetsbroaderbuildingscanalscapitalcategorycommunityconstructedconstructiondirectlyeconomicelectricalemploymentenvironmentalerosionfacilitiesfinancedhabitatinfrastructurelong-term
SHARED TOKENS (38): "assets", "broader", "buildings", "canals", "capital", "category", "community", "constructed", "construction", "directly", "economic", "electrical", "employment", "environmental", "erosion", "facilities", "financed", "habitat", "infrastructure", "long-term".... | EXACT TITLE in land_use_planning: "Public works". | EXACT TITLE in energy_utilities: "Public works".
0.500
UrbanSim ↗ Q7899833 EXACT TITLE
administrationagenciesapplicationdesigneddevelopmentdistributedenvironmentalfederalfoundationfundedgrantslandmetropolitanmodelingnationalorgplanningplatformsprofessionalprotection
SHARED TOKENS (30): "administration", "agencies", "application", "designed", "development", "distributed", "environmental", "federal", "foundation", "funded", "grants", "land", "metropolitan", "modeling", "national", "org", "planning", "platforms", "professional", "protection".... | EXACT TITLE in land_use_planning: "UrbanSim".
0.500
allowsappropriatebecomescomponentsefficiencyenvironmentalindustrialirrigationmaterialsprocessprocessesqualityrecreationresourceriversupplysystemstreatmentuseswater
SHARED TOKENS (20): "allows", "appropriate", "becomes", "components", "efficiency", "environmental", "industrial", "irrigation", "materials", "process", "processes", "quality", "recreation", "resource", "river", "supply", "systems", "treatment", "uses", "water". | EXACT TITLE in energy_utilities: "Water treatment".
0.500
Microgrid ↗ Q5762595 EXACT TITLE
allowsboundariesbuildingcentralizedconnectedcontroldistributeddistributioneconomicefficiencyelectricalemergencyentityevenfunctiongenerallyintegrateisolatedlocalmajor
SHARED TOKENS (39): "allows", "boundaries", "building", "centralized", "connected", "control", "distributed", "distribution", "economic", "efficiency", "electrical", "emergency", "entity", "even", "function", "generally", "integrate", "isolated", "local", "major".... | EXACT TITLE in energy_utilities: "Microgrid".
0.500
Wetland ↗ Q170321 EXACT TITLE
actamongassessmentbuildingchangeconservationcontroldifferentdistinctenvironmentalfloodformfunctionfunctionsgroundwateridentifyinfrastructureinternationallandslargest
SHARED TOKENS (34): "act", "among", "assessment", "building", "change", "conservation", "control", "different", "distinct", "environmental", "flood", "form", "function", "functions", "groundwater", "identify", "infrastructure", "international", "lands", "largest".... | EXACT TITLE in land_use_planning: "Wetland".
0.500
associationcertificationcontractorsengineersfoundationgroundgroundwatergroupinternationalmonitoringnationaloperatesorganizationprogramspromotespublicpublishesrelatedresearchseparate
SHARED TOKENS (22): "association", "certification", "contractors", "engineers", "foundation", "ground", "groundwater", "group", "international", "monitoring", "national", "operates", "organization", "programs", "promotes", "public", "publishes", "related", "research", "separate".... | EXACT TITLE in energy_utilities: "National Ground Water Association".
0.500
Snake River ↗ Q272074 EXACT TITLE
activitiesagenciesamericancanyoncentralcommercialconstructedconstructioncontroldrainseasternfallsfarmlandfloodgovernmentshabitathistoryidahoirrigationlarge
SHARED TOKENS (40): "activities", "agencies", "american", "canyon", "central", "commercial", "constructed", "construction", "control", "drains", "eastern", "falls", "farmland", "flood", "governments", "habitat", "history", "idaho", "irrigation", "large".... | EXACT TITLE in energy_utilities: "Snake River".
0.500
applicationsassociatedbasebeyondconnectionsdatadescriptionsdevelopmenteventsgraphincreasinglyknowledgemodelnetworksprojectsrelationshipsresearchsearchsystemsunderlying
SHARED TOKENS (21): "applications", "associated", "base", "beyond", "connections", "data", "descriptions", "development", "events", "graph", "increasingly", "knowledge", "model", "networks", "projects", "relationships", "research", "search", "systems", "underlying".... | EXACT TITLE in land_use_planning: "Knowledge graph". | EXACT TITLE in energy_utilities: "Knowledge graph".
0.500
actagenciesagriculturalagricultureassessmentbroaderconservationdepartmentimprovementlandownerslandslocalnaturalprivateprogramsprojectprotectqualityresourcesrural
SHARED TOKENS (24): "act", "agencies", "agricultural", "agriculture", "assessment", "broader", "conservation", "department", "improvement", "landowners", "lands", "local", "natural", "private", "programs", "project", "protect", "quality", "resources", "rural".... | EXACT TITLE in land_use_planning: "Natural Resources Conservation Service".
0.500
administrativeappliedbuildingcommercialconnectionsconstructionculturaldesigndeveloperdevelopmentfunctionsinstitutionalintegratedmultiplephysicallyplanningpolicyprivateprojectsresidential
SHARED TOKENS (25): "administrative", "applied", "building", "commercial", "connections", "construction", "cultural", "design", "developer", "development", "functions", "institutional", "integrated", "multiple", "physically", "planning", "policy", "private", "projects", "residential".... | EXACT TITLE in land_use_planning: "Mixed-use development".
0.500
Floodplain ↗ Q193110 EXACT TITLE
advantageagriculturalbasecontroldischargeexperiencefloodlandriskriversoilurbanvalleywaterwaters
SHARED TOKENS (15): "advantage", "agricultural", "base", "control", "discharge", "experience", "flood", "land", "risk", "river", "soil", "urban", "valley", "water", "waters". | EXACT TITLE in land_use_planning: "Floodplain".
0.500
commercialdevelopersdevelopmentindependentlyindustriallandlargeownedparcelsparksretailsinglesmallersubdivisionsubdivisions
SHARED TOKENS (15): "commercial", "developers", "development", "independently", "industrial", "land", "large", "owned", "parcels", "parks", "retail", "single", "smaller", "subdivision", "subdivisions". | EXACT TITLE in land_use_planning: "Subdivision (land)". | EXACT TITLE in energy_utilities: "Subdivision (land)".
0.500
Surveying ↗ Q816425 EXACT TITLE
analysisboundariescivilcomponentsconstructiondefinitiondevelopmentengineeringestablishgishistorylandlawlegalmappingownershipplanningpositionsprofessionalproperty
SHARED TOKENS (28): "analysis", "boundaries", "civil", "components", "construction", "definition", "development", "engineering", "establish", "gis", "history", "land", "law", "legal", "mapping", "ownership", "planning", "positions", "professional", "property".... | EXACT TITLE in land_use_planning: "Surveying".
0.500
businessconstructioncontractordesigndifferentdirectlyelectricalfirmhomeindividuallicensesownerspersonprofessionalrelatedrequirementsspecializedsystemswork
SHARED TOKENS (19): "business", "construction", "contractor", "design", "different", "directly", "electrical", "firm", "home", "individual", "licenses", "owners", "person", "professional", "related", "requirements", "specialized", "systems", "work". | EXACT TITLE in energy_utilities: "Electrical contractor".
0.500
adabaseboisecentercommercialcommissiondepartmentdowntownfallsfieldfirefunctionsidahoincreaseinternationaljointmillionnationaloperatedoperates
SHARED TOKENS (29): "ada", "base", "boise", "center", "commercial", "commission", "department", "downtown", "falls", "field", "fire", "functions", "idaho", "increase", "international", "joint", "million", "national", "operated", "operates".... | EXACT TITLE in land_use_planning: "Boise Airport".
0.500
activitiesadministrationadoptedanalysisanotherarchitecturebroaderbuildingsbuiltbusinesscapitalcategorycivilcodescommunitycreatingdesigndesigningdevelopmentdifferent
SHARED TOKENS (68): "activities", "administration", "adopted", "analysis", "another", "architecture", "broader", "buildings", "built", "business", "capital", "category", "civil", "codes", "community", "creating", "design", "designing", "development", "different".... | EXACT TITLE in land_use_planning: "Urban planning".
0.500
Annexation ↗ EXACT TITLE
acquisitionactannexationanothercontrolcurrentdescribesdistinctgenerallyinternationallawlegalmeansphysicalterritorytitle
SHARED TOKENS (16): "acquisition", "act", "annexation", "another", "control", "current", "describes", "distinct", "generally", "international", "law", "legal", "means", "physical", "territory", "title". | EXACT TITLE in land_use_planning: "Annexation". | EXACT TITLE in energy_utilities: "Annexation".
0.500
activeamericancentercollectioncorporationenvironmentalfacilitieslargestmanagementmaterialsoperatedoperatesoperationsownedprojectsprotectionresidentsresponsibilityrevenuesite
SHARED TOKENS (24): "active", "american", "center", "collection", "corporation", "environmental", "facilities", "largest", "management", "materials", "operated", "operates", "operations", "owned", "projects", "protection", "residents", "responsibility", "revenue", "site".... | EXACT TITLE in energy_utilities: "Republic Services".
0.500
Compost ↗ Q212254 EXACT TITLE
agriculturecommercialconstructioneconomicenvironmentallandmanagementmaterialsphysicalprocesspropertiesreclamationreducereducingrequiresresultingsoilurbanwater
SHARED TOKENS (19): "agriculture", "commercial", "construction", "economic", "environmental", "land", "management", "materials", "physical", "process", "properties", "reclamation", "reduce", "reducing", "requires", "resulting", "soil", "urban", "water". | EXACT TITLE in energy_utilities: "Compost".
0.500
Landfill ↗ Q152810 EXACT TITLE
activechangeconsolidationdischargeenvironmentalfinalformlandmanagementmaterialsmunicipalreleasesitesitessoiltransfertreatmentuses
SHARED TOKENS (18): "active", "change", "consolidation", "discharge", "environmental", "final", "form", "land", "management", "materials", "municipal", "release", "site", "sites", "soil", "transfer", "treatment", "uses". | EXACT TITLE in energy_utilities: "Landfill".
0.500
actagenciesapplyauthoritydecisionsdefinitiondesignedenvironmentalevaluatefederalfinaljanuarylawmodelednationalpersonpolicypotentialpreserveproposed
SHARED TOKENS (25): "act", "agencies", "apply", "authority", "decisions", "definition", "designed", "environmental", "evaluate", "federal", "final", "january", "law", "modeled", "national", "person", "policy", "potential", "preserve", "proposed".... | EXACT TITLE in land_use_planning: "National Environmental Policy Act".
0.500
activityadvantageannualapplicationapplicationsapproximatelyboundariescapacitycontainsdirectefficiencyevenformationgroundgroundwatermeanneededsource
SHARED TOKENS (18): "activity", "advantage", "annual", "application", "applications", "approximately", "boundaries", "capacity", "contains", "direct", "efficiency", "even", "formation", "ground", "groundwater", "mean", "needed", "source". | EXACT TITLE in energy_utilities: "Geothermal heating".
0.500
actadministeredadministrationagainstbuildingscommunityconstructioncontrolcostcostscreatingdebtdesigneddevelopmentemergencyenforcementfederalfloodgenerallyhazard
SHARED TOKENS (39): "act", "administered", "administration", "against", "buildings", "community", "construction", "control", "cost", "costs", "creating", "debt", "designed", "development", "emergency", "enforcement", "federal", "flood", "generally", "hazard".... | EXACT TITLE in land_use_planning: "National Flood Insurance Program".
0.500
affectsalternativesbusinesscertificationconsumercreateseconomicformgrowthindividuallawlicenselicensedlicensingmarketoccupationalpermittingpersonprofessionalprotection
SHARED TOKENS (37): "affects", "alternatives", "business", "certification", "consumer", "creates", "economic", "form", "growth", "individual", "law", "license", "licensed", "licensing", "market", "occupational", "permitting", "person", "professional", "protection".... | EXACT TITLE in energy_utilities: "Occupational licensing".
0.500
associateddemandeconomicemergencyformalgenerallyhomehouseholdindexlocalmarketsnationalownershipresponsesetsupply
SHARED TOKENS (16): "associated", "demand", "economic", "emergency", "formal", "generally", "home", "household", "index", "local", "markets", "national", "ownership", "response", "set", "supply". | EXACT TITLE in land_use_planning: "Affordable housing".
0.500
Plat ↗ Q831939 EXACT TITLE
anotherbecomeboardcommissiondepartmentdescriptionsgoverningindividualinformationlandlandslegallegallylocalmapofficeplanningportionspublicrather
SHARED TOKENS (28): "another", "become", "board", "commission", "department", "descriptions", "governing", "individual", "information", "land", "lands", "legal", "legally", "local", "map", "office", "planning", "portions", "public", "rather".... | EXACT TITLE in land_use_planning: "Plat". | EXACT TITLE in energy_utilities: "Plat".
0.500
Irrigation ↗ Q11453 EXACT TITLE
agriculturalagricultureapplicationappliescentralchangescollectionconsolidationcontrolcontrolleddirectlydischargedistributeddistributiondrainageenvironmentalfieldformgroundwatergrowth
SHARED TOKENS (47): "agricultural", "agriculture", "application", "applies", "central", "changes", "collection", "consolidation", "control", "controlled", "directly", "discharge", "distributed", "distribution", "drainage", "environmental", "field", "form", "groundwater", "growth".... | EXACT TITLE in land_use_planning: "Irrigation". | EXACT TITLE in energy_utilities: "Irrigation".
0.500
Veolia ↗ Q1632461 EXACT TITLE
activitiesadoptedboardbusinessenvironmentalgroupmajormanagementoperationspublicrecordedrestrevenuesingleutilitywater
SHARED TOKENS (16): "activities", "adopted", "board", "business", "environmental", "group", "major", "management", "operations", "public", "recorded", "rest", "revenue", "single", "utility", "water". | EXACT TITLE in energy_utilities: "Veolia".
0.500
Pipefitter ↗ Q5407416 EXACT TITLE
casescentercertifiedcommercialcompletionconstructioncontrolleddifferenteducationindustrialinstitutionallicensedmaintainsnationalpressureprocessregulatedrequirerequirementsrequires
SHARED TOKENS (28): "cases", "center", "certified", "commercial", "completion", "construction", "controlled", "different", "education", "industrial", "institutional", "licensed", "maintains", "national", "pressure", "process", "regulated", "require", "requirements", "requires".... | EXACT TITLE in energy_utilities: "Pipefitter".
0.500
Recycling ↗ Q132580 EXACT TITLE
anothercenterconservationcontrolconventionaldelivereddependsdifferenteconomicenvironmentalformhazardoushouseholdmanagementmaterialsofficeprocessproducespromotesproperties
SHARED TOKENS (30): "another", "center", "conservation", "control", "conventional", "delivered", "depends", "different", "economic", "environmental", "form", "hazardous", "household", "management", "materials", "office", "process", "produces", "promotes", "properties".... | EXACT TITLE in energy_utilities: "Recycling".
0.500
Site plan ↗ Q1284677 EXACT TITLE
analysisarrangementboundariesbuildingbuildingscodesconstructioncontractorcountiescreatingdesigndevelopmentdrainageengineerengineersfacilitiesinfrastructurelandlegallicensed
SHARED TOKENS (42): "analysis", "arrangement", "boundaries", "building", "buildings", "codes", "construction", "contractor", "counties", "creating", "design", "development", "drainage", "engineer", "engineers", "facilities", "infrastructure", "land", "legal", "licensed".... | EXACT TITLE in land_use_planning: "Site plan".
0.500
activitiesagriculturalagricultureannualapprovalcollectioncommissioncontrolleddefinitionsdevelopmentevenfarmlandgenerallyirrigatedirrigationlandlandsmeansnaturalorganization
SHARED TOKENS (27): "activities", "agricultural", "agriculture", "annual", "approval", "collection", "commission", "controlled", "definitions", "development", "even", "farmland", "generally", "irrigated", "irrigation", "land", "lands", "means", "natural", "organization".... | EXACT TITLE in land_use_planning: "Agricultural land". | EXACT TITLE in energy_utilities: "Agricultural land".
0.500
builtcapacitycommunitydatadefinitionsdistributedenvironmentalfundingintegrationisolatedlocalnationaloperatingpermittingpowerproceduresprocessesproduceproductionproject
SHARED TOKENS (32): "built", "capacity", "community", "data", "definitions", "distributed", "environmental", "funding", "integration", "isolated", "local", "national", "operating", "permitting", "power", "procedures", "processes", "produce", "production", "project".... | EXACT TITLE in energy_utilities: "Small hydro".
0.500
Light rail ↗ Q1268865 EXACT TITLE
broadercapacitydefinitionsdifferentflexibilityformindividualmeaningmodesmultiplenetworksoperatesoperatingoperationsrapidrightright-of-wayrights-of-waysystemsystems
SHARED TOKENS (25): "broader", "capacity", "definitions", "different", "flexibility", "form", "individual", "meaning", "modes", "multiple", "networks", "operates", "operating", "operations", "rapid", "right", "right-of-way", "rights-of-way", "system", "systems".... | EXACT TITLE in land_use_planning: "Light rail".
0.500
activitiescommunitycurrentdevelopmentfoundationgrowthindividualinstrumentslandlargelong-termparcelplanplanningplanspolicyprocessprovidepublicrecreation
SHARED TOKENS (27): "activities", "community", "current", "development", "foundation", "growth", "individual", "instruments", "land", "large", "long-term", "parcel", "plan", "planning", "plans", "policy", "process", "provide", "public", "recreation".... | EXACT TITLE in land_use_planning: "Comprehensive planning".
0.500
agenciesalternativesapplyassessmentbusinessesdesignevaluationfacilitiesfuturegenerallylinesmovemovementplanningprivateprocesspublicsystemtransportation
SHARED TOKENS (19): "agencies", "alternatives", "apply", "assessment", "businesses", "design", "evaluation", "facilities", "future", "generally", "lines", "move", "movement", "planning", "private", "process", "public", "system", "transportation". | EXACT TITLE in land_use_planning: "Transportation planning".
0.500
authoritybuildingbuildingsbusinesscapitalcommercialestatefunctionsintendedlandlocalmaintainmultipleofficepropertyrealresidentialretailunitsurban
SHARED TOKENS (21): "authority", "building", "buildings", "business", "capital", "commercial", "estate", "functions", "intended", "land", "local", "maintain", "multiple", "office", "property", "real", "residential", "retail", "units", "urban".... | EXACT TITLE in energy_utilities: "Commercial property".
0.480
constructioncontrolcontrolsdesignederosiongenerallymanagementmeasuresneedreduceriversitesoilwater
SHARED TOKENS (14): "construction", "control", "controls", "designed", "erosion", "generally", "management", "measures", "need", "reduce", "river", "site", "soil", "water". | EXACT TITLE in energy_utilities: "Sediment control".
0.480
addressingbusinessesconstructioneconomicgrowthinfrastructurelandprivateprocessprojectspublicrenewalseturban
SHARED TOKENS (14): "addressing", "businesses", "construction", "economic", "growth", "infrastructure", "land", "private", "process", "projects", "public", "renewal", "set", "urban". | EXACT TITLE in land_use_planning: "Urban renewal".
0.480
americanboisebrandconsumerdatademandidahomajormarketownedsemiconductorservedsouthtechnology
SHARED TOKENS (14): "american", "boise", "brand", "consumer", "data", "demand", "idaho", "major", "market", "owned", "semiconductor", "served", "south", "technology". | EXACT TITLE in land_use_planning: "Micron Technology".
0.480
Easement ↗ Q448405 EXACT TITLE
amonganothereasementsitselflandlawownedpersonpropertypublicrealrightrightsstated
SHARED TOKENS (14): "among", "another", "easements", "itself", "land", "law", "owned", "person", "property", "public", "real", "right", "rights", "stated". | EXACT TITLE in land_use_planning: "Easement". | EXACT TITLE in energy_utilities: "Easement".
0.480
commissioncommissionersdepartmentfederalindependentlicensingnaturalpipelinepipelinesprojectsregulatesregulatoryreviewsserving
SHARED TOKENS (14): "commission", "commissioners", "department", "federal", "independent", "licensing", "natural", "pipeline", "pipelines", "projects", "regulates", "regulatory", "reviews", "serving". | EXACT TITLE in energy_utilities: "Federal Energy Regulatory Commission".
0.460
agriculturalanotherindustrialmeanmunicipalprocessprocessesresultingseparationtreatmentuseswastewaterwater
SHARED TOKENS (13): "agricultural", "another", "industrial", "mean", "municipal", "process", "processes", "resulting", "separation", "treatment", "uses", "wastewater", "water". | EXACT TITLE in energy_utilities: "Wastewater treatment".
0.460
businessdistributioneasternelectricalgenerallyidahonaturaloperatespowerregulatedriversouthernutility
SHARED TOKENS (13): "business", "distribution", "eastern", "electrical", "generally", "idaho", "natural", "operates", "power", "regulated", "river", "southern", "utility". | EXACT TITLE in energy_utilities: "Idaho Power".
0.460
againstassessmentcomplianceconditiongenerallyphysicalqualitysafetysetstandardssupplytreatmentwater
SHARED TOKENS (13): "against", "assessment", "compliance", "condition", "generally", "physical", "quality", "safety", "set", "standards", "supply", "treatment", "water". | EXACT TITLE in land_use_planning: "Water quality". | EXACT TITLE in energy_utilities: "Water quality".
0.460
administrativeappliesboardbuildingcodedevelopmentlandmunicipalordinancerulessetstandardszoning
SHARED TOKENS (13): "administrative", "applies", "board", "building", "code", "development", "land", "municipal", "ordinance", "rules", "set", "standards", "zoning". | EXACT TITLE in land_use_planning: "Variance (land use)".
0.440
activitydependsdirectlyenvironmentalformmaintainmajorphysicalpreparationsafewaterwork
SHARED TOKENS (12): "activity", "depends", "directly", "environmental", "form", "maintain", "major", "physical", "preparation", "safe", "water", "work". | EXACT TITLE in energy_utilities: "Drinking water".
0.440
applicablefederalgovernmentslawprivateprocesspropertyprotectedprovideregulatoryrightsvalue
SHARED TOKENS (12): "applicable", "federal", "governments", "law", "private", "process", "property", "protected", "provide", "regulatory", "rights", "value". | EXACT TITLE in land_use_planning: "Regulatory taking".
0.420
departmentfederalfundingfutureidahoinfrastructureoperationsorganizationplanningprogramstransportation
SHARED TOKENS (11): "department", "federal", "funding", "future", "idaho", "infrastructure", "operations", "organization", "planning", "programs", "transportation". | EXACT TITLE in land_use_planning: "Idaho Transportation Department".
0.400
Drainage ↗ Q7481320 EXACT TITLE
agriculturaldrainagegrowthinternallandnaturalneedproductionsupplieswater
SHARED TOKENS (10): "agricultural", "drainage", "growth", "internal", "land", "natural", "need", "production", "supplies", "water". | EXACT TITLE in land_use_planning: "Drainage". | EXACT TITLE in energy_utilities: "Drainage".
0.380
agenciesdevelopmentdivisionenvironmentalfederalofficepolicyqualityworks
SHARED TOKENS (9): "agencies", "development", "division", "environmental", "federal", "office", "policy", "quality", "works". | EXACT TITLE in land_use_planning: "Council on Environmental Quality".
0.380
canyoneasternfeetidahonationalrecreationriverwaterswestern
SHARED TOKENS (9): "canyon", "eastern", "feet", "idaho", "national", "recreation", "river", "waters", "western". | EXACT TITLE in energy_utilities: "Hells Canyon".
0.360
Reservoir ↗ Q131681 EXACT TITLE
buildingbuiltcontrollingdrainsformpowerreservoirwater
SHARED TOKENS (8): "building", "built", "controlling", "drains", "form", "power", "reservoir", "water". | EXACT TITLE in land_use_planning: "Reservoir". | EXACT TITLE in energy_utilities: "Reservoir".
0.360
administrativeauthoritypowerpowersprocedureprocessreviewseparation
SHARED TOKENS (8): "administrative", "authority", "power", "powers", "procedure", "process", "review", "separation". | EXACT TITLE in land_use_planning: "Judicial review".
0.360
applicableauthorizesdistrictlandordinancepermituseszoning
SHARED TOKENS (8): "applicable", "authorizes", "district", "land", "ordinance", "permit", "uses", "zoning". | EXACT TITLE in land_use_planning: "Special-use permit".
0.340
boisedepartmentenvironmentalfederalidahoqualityregional
SHARED TOKENS (7): "boise", "department", "environmental", "federal", "idaho", "quality", "regional". | EXACT TITLE in land_use_planning: "Idaho Department of Environmental Quality". | EXACT TITLE in energy_utilities: "Idaho Department of Environmental Quality".
0.340
organizationorganizationspublicregulatorysystemutilitieswater
SHARED TOKENS (7): "organization", "organizations", "public", "regulatory", "system", "utilities", "water". | EXACT TITLE in energy_utilities: "Public water system".
0.320
Parcel ↗ EXACT TITLE
deliverygeographyindividuallandparcelparcels
SHARED TOKENS (6): "delivery", "geography", "individual", "land", "parcel", "parcels". | EXACT TITLE in land_use_planning: "Parcel". | EXACT TITLE in energy_utilities: "Parcel".
0.300
anotherapplicationbarriersconstructioncreatedependdevelopersdevelopmentenvironmentalfieldgenerallygroundwaterhazardousincentiveslandmaterialsmediamunicipalphysicalpressure
SHARED TOKENS (28): "another", "application", "barriers", "construction", "create", "depend", "developers", "development", "environmental", "field", "generally", "groundwater", "hazardous", "incentives", "land", "materials", "media", "municipal", "physical", "pressure"....
0.300
Smart growth ↗ Q1320100 KW CROSS HIGH
communitycompletecostsculturaldevelopmentemploymentgrowthlandnaturalplanningpreservepublicregionalresourcesschoolstransportationurban
SHARED TOKENS (17): "community", "complete", "costs", "cultural", "development", "employment", "growth", "land", "natural", "planning", "preserve", "public", "regional", "resources", "schools", "transportation", "urban".
0.300
Urban sprawl ↗ Q192042 KW CROSS HIGH
associatedbecomebuildingcommercialcostsdevelopmentenvironmentalexpansionformgrowthindustrialinfrastructurelandlargeplanningpopulationprivatepropertyprotectionrapid
SHARED TOKENS (31): "associated", "become", "building", "commercial", "costs", "development", "environmental", "expansion", "form", "growth", "industrial", "infrastructure", "land", "large", "planning", "population", "private", "property", "protection", "rapid"....
0.300
additionalagriculturalapplicationsboundariesbuiltcapacitycombinescostcostsdepartmentdistrictformationindustrialmeaningpowerprocessesproducereduceresourcessource
SHARED TOKENS (22): "additional", "agricultural", "applications", "boundaries", "built", "capacity", "combines", "cost", "costs", "department", "district", "formation", "industrial", "meaning", "power", "processes", "produce", "reduce", "resources", "source"....
0.300
Street network ↗ Q358078 KW CROSS HIGH
affectanalysisbecomeconnectedcreatingfoundationlinesmovementnationalnetworknetworksroadsroutestreetsystemtraffictransportation
SHARED TOKENS (17): "affect", "analysis", "become", "connected", "creating", "foundation", "lines", "movement", "national", "network", "networks", "roads", "route", "street", "system", "traffic", "transportation".
0.300
allowsbaseconsumercontrolcontrollingcostsdemanddevelopmentdirectelectricalevenmakesmanagementneednetworkpowerprivateprocesspublicrather
SHARED TOKENS (25): "allows", "base", "consumer", "control", "controlling", "costs", "demand", "development", "direct", "electrical", "even", "makes", "management", "need", "network", "power", "private", "process", "public", "rather"....
0.300
Wind power ↗ Q43302 KW CROSS HIGH
agreementanalystscapacitychangeconnectedelectricalgenerallynearlypotentialpowersmallersourcesouthernsupplywork
SHARED TOKENS (15): "agreement", "analysts", "capacity", "change", "connected", "electrical", "generally", "nearly", "potential", "power", "smaller", "source", "southern", "supply", "work".
0.300
alternativesapplicationscapacitychainconservationcostdefinesdemanddistrictefficiencyexpectedformgrowthintegratedlawlong-termmeansmethodologyplanningpower
SHARED TOKENS (30): "alternatives", "applications", "capacity", "chain", "conservation", "cost", "defines", "demand", "district", "efficiency", "expected", "form", "growth", "integrated", "law", "long-term", "means", "methodology", "planning", "power"....
0.300
Net metering ↗ Q2685471 KW CROSS HIGH
allowingallowsannualarrangementconnectioncurrentdesignedevenfeemechanismnetpolicypowerprivateprocedurerequirerequiresretailsettlementsingle
SHARED TOKENS (21): "allowing", "allows", "annual", "arrangement", "connection", "current", "designed", "even", "fee", "mechanism", "net", "policy", "power", "private", "procedure", "require", "requires", "retail", "settlement", "single"....
0.300
actamericanamongassociationauthoritybureauconstructioncontractsdepartmentfederalfundedirrigatedirrigationlandlandslawmajormeridiannationalnearly
SHARED TOKENS (33): "act", "american", "among", "association", "authority", "bureau", "construction", "contracts", "department", "federal", "funded", "irrigated", "irrigation", "land", "lands", "law", "major", "meridian", "national", "nearly"....
0.300
activitiesagriculturalagricultureallowsbusinessescostcostsdirectdistributionenvironmentalgroundwaterindustrialirrigationmanagementmeaningmunicipalnaturalplannedprocessreclamation
SHARED TOKENS (33): "activities", "agricultural", "agriculture", "allows", "businesses", "cost", "costs", "direct", "distribution", "environmental", "groundwater", "industrial", "irrigation", "management", "meaning", "municipal", "natural", "planned", "process", "reclamation"....
0.300
actadministeredagenciesauthoritycodeconservationdependdesigneddevelopmentdifferentdirectseconomicfederalgrowthinternationallawmeansnationalneededprotect
SHARED TOKENS (26): "act", "administered", "agencies", "authority", "code", "conservation", "depend", "designed", "development", "different", "directs", "economic", "federal", "growth", "international", "law", "means", "national", "needed", "protect"....
0.300
Smart grid ↗ Q689855 KW CROSS HIGH
capacitycodeconnectcontrolcreatecurrentdeliverydemanddistributeddistributionefficiencyelectricalevenfinancedfinancingflexibilityfunctiongenerichomeimprovement
SHARED TOKENS (51): "capacity", "code", "connect", "control", "create", "current", "delivery", "demand", "distributed", "distribution", "efficiency", "electrical", "even", "financed", "financing", "flexibility", "function", "generic", "home", "improvement"....
0.300
approvalbuildingcannotcodecodescompletioncomplianceconstructiondevelopmenteconomyemploymentexpansionfinancinggenerallygovernmentslawlocalnationalneededpermit
SHARED TOKENS (27): "approval", "building", "cannot", "code", "codes", "completion", "compliance", "construction", "development", "economy", "employment", "expansion", "financing", "generally", "governments", "law", "local", "national", "needed", "permit"....
0.300
informationmappingprocesspropertiessoil
SHARED TOKENS (5): "information", "mapping", "process", "properties", "soil". | EXACT TITLE in land_use_planning: "Soil survey".
0.300
actapplicablebroadercostdatadesigneddevelopmentestablishforminformationinstitutionslegalmakingmeanspolicyprivateprotectionprovisionspublicrequests
SHARED TOKENS (26): "act", "applicable", "broader", "cost", "data", "designed", "development", "establish", "form", "information", "institutions", "legal", "making", "means", "policy", "private", "protection", "provisions", "public", "requests"....
0.300
appropriatebuildingbusinesscentercentraldesigneddevelopmentformgrowthincreaseintegratedlandnetworkplanningprivatepromotespublicreducingresidentialscale
SHARED TOKENS (24): "appropriate", "building", "business", "center", "central", "designed", "development", "form", "growth", "increase", "integrated", "land", "network", "planning", "private", "promotes", "public", "reducing", "residential", "scale"....
0.300
anotherarrangementbecomechainconsolidationcorporationdifferentdirectlyeconomyfinalfirmintegratedintegrationinternationallargemakingmanagementmarketmeasuresneed
SHARED TOKENS (32): "another", "arrangement", "become", "chain", "consolidation", "corporation", "different", "directly", "economy", "final", "firm", "integrated", "integration", "international", "large", "making", "management", "market", "measures", "need"....
0.300
activitiesactivityadministrationadministrativeagenciesanotherbuiltchangescivilcontrolcoordinatedecisionsdivisioneconomiceducationenforcementenvironmentalgenerallygoverningincrease
SHARED TOKENS (34): "activities", "activity", "administration", "administrative", "agencies", "another", "built", "changes", "civil", "control", "coordinate", "decisions", "division", "economic", "education", "enforcement", "environmental", "generally", "governing", "increase"....
0.300
Utility pole ↗ Q1144084 KW CROSS HIGH
applicationcabledifferentdistributionelectricalgenerallygroundincreasinglylargelinespowerpublicreducerelatedresidentialsafetysouthstreetsupportsystem
SHARED TOKENS (25): "application", "cable", "different", "distribution", "electrical", "generally", "ground", "increasingly", "large", "lines", "power", "public", "reduce", "related", "residential", "safety", "south", "street", "support", "system"....
0.300
analysisbuildingbuildingscapacitycommercialcomponentsdistributedelectricalformindustriallargemanagementmillionmonitoringnetpowerresidentialscalestructurestudy
SHARED TOKENS (22): "analysis", "building", "buildings", "capacity", "commercial", "components", "distributed", "electrical", "form", "industrial", "large", "management", "million", "monitoring", "net", "power", "residential", "scale", "structure", "study"....
0.300
amongannexationboundariescontroldistinctexpandinggovernmentsjurisdictionlawlocalmunicipalprocessresponseterritoryurbanwork
SHARED TOKENS (16): "among", "annexation", "boundaries", "control", "distinct", "expanding", "governments", "jurisdiction", "law", "local", "municipal", "process", "response", "territory", "urban", "work".
0.300
advantagebarrierscapitalcostcostscreatingeconomicsfirmfirmsforminfrastructurelargelargestmarketmultiplenaturalpotentialpublicregulationscale
SHARED TOKENS (25): "advantage", "barriers", "capital", "cost", "costs", "creating", "economics", "firm", "firms", "form", "infrastructure", "large", "largest", "market", "multiple", "natural", "potential", "public", "regulation", "scale"....
0.300
approximatelycapacitycomponentscostcreatecreatescreatingdevelopmentformlocallong-termmarketmeansnaturalnetworkspressureprocessprocessesproductionreport
SHARED TOKENS (30): "approximately", "capacity", "components", "cost", "create", "creates", "creating", "development", "form", "local", "long-term", "market", "means", "natural", "networks", "pressure", "process", "processes", "production", "report"....
0.300
Combined sewer ↗ Q361472 KW CROSS HIGH
buildingbuildingscapacitycollectionconstructedconstructioncostsdesigndesigneddischargesdrainageenvironmentaleventsexpandingexperiencefacilitiesgroundindividualindustrialinfrastructure
SHARED TOKENS (41): "building", "buildings", "capacity", "collection", "constructed", "construction", "costs", "design", "designed", "discharges", "drainage", "environmental", "events", "expanding", "experience", "facilities", "ground", "individual", "industrial", "infrastructure"....
0.300
Photovoltaics ↗ Q192127 KW CROSS HIGH
additionalapplicationscapacitychangeconstraincostcostscurrentdemanddirectdistributionefficiencyelectricalexpectedfinancialfinancingfundedgrowthhistoryincentives
SHARED TOKENS (48): "additional", "applications", "capacity", "change", "constrain", "cost", "costs", "current", "demand", "direct", "distribution", "efficiency", "electrical", "expected", "financial", "financing", "funded", "growth", "history", "incentives"....
0.300
Eutrophication ↗ Q156698 KW CROSS HIGH
agriculturecontrolsculturaldevelopmentenvironmentalgrowthindustrialprocessprogramreduceresultingriversourcesubstantialwastewaterwater
SHARED TOKENS (16): "agriculture", "controls", "cultural", "development", "environmental", "growth", "industrial", "process", "program", "reduce", "resulting", "river", "source", "substantial", "wastewater", "water".
0.300
Right of way ↗ Q17128254 KW CROSS HIGH
authoritycanalscasesconservationdifferentestategroundlandlegallineslocalmeanownerownershippathphysicalprivaterealrightright-of-way
SHARED TOKENS (29): "authority", "canals", "cases", "conservation", "different", "estate", "ground", "land", "legal", "lines", "local", "mean", "owner", "ownership", "path", "physical", "private", "real", "right", "right-of-way"....
0.300
allowsapproximatelyassociationconductsconstructioncontractorscostdataelectricalinsideinternationaljointnationalnetworksprogramspublicrelatedrepresentstradetraining
SHARED TOKENS (23): "allows", "approximately", "association", "conducts", "construction", "contractors", "cost", "data", "electrical", "inside", "international", "joint", "national", "networks", "programs", "public", "related", "represents", "trade", "training"....
0.300
additionalbuildingconservationcurrentdepartmentdevelopmentdirectlydirectsfederalnationaloriginatingphysicalpolicypositionpowerproductionprogramprojectresearchserved
SHARED TOKENS (21): "additional", "building", "conservation", "current", "department", "development", "directly", "directs", "federal", "national", "originating", "physical", "policy", "position", "power", "production", "program", "project", "research", "served"....
0.300
actualagriculturalcommunityconservationcontrolledcreatedevelopmentdistrictsenvironmentalgrowthlandmanagementnaturalownedplanningpreserveprivateprotectedresourcesrural
SHARED TOKENS (24): "actual", "agricultural", "community", "conservation", "controlled", "create", "development", "districts", "environmental", "growth", "land", "management", "natural", "owned", "planning", "preserve", "private", "protected", "resources", "rural"....
0.300
againstallowingallowschangescommercialcontrolledcurrentdifferentdirecteconomyformindependentlylinesnetworknetworkspowerrapidrequiresourcesouth
SHARED TOKENS (26): "against", "allowing", "allows", "changes", "commercial", "controlled", "current", "different", "direct", "economy", "form", "independently", "lines", "network", "networks", "power", "rapid", "require", "source", "south"....
0.300
allowsbecomebuiltconnectedconnectingcurrentdeliverydistributionelectricallargemarketsmeaningmillionnearlyneedneedednetworkpopulationpowerrisk
SHARED TOKENS (24): "allows", "become", "built", "connected", "connecting", "current", "delivery", "distribution", "electrical", "large", "markets", "meaning", "million", "nearly", "need", "needed", "network", "population", "power", "risk"....
0.300
alternativesanotherapplicationscapacityconsumercostdemanddevelopmentdifferentdischargeefficiencyenvironmentalfireformgenerallyhazardlargematerialspowerproduction
SHARED TOKENS (28): "alternatives", "another", "applications", "capacity", "consumer", "cost", "demand", "development", "different", "discharge", "efficiency", "environmental", "fire", "form", "generally", "hazard", "large", "materials", "power", "production"....
0.300
activitiesauthoritycapacitycasesenforcementfederalgovernmentsindividualjurisdictionlawlegalmeansmeasuresneedphysicalpowerpowersprotectedpublicregulate
SHARED TOKENS (26): "activities", "authority", "capacity", "cases", "enforcement", "federal", "governments", "individual", "jurisdiction", "law", "legal", "means", "measures", "need", "physical", "power", "powers", "protected", "public", "regulate"....
0.300
allowsamonganotherbuildingsbuiltcasescodeconstructedcontrolcontrolscostcreatedevelopersdevelopmentfeesfinancialfunctionsincentivesindicateslocal
SHARED TOKENS (37): "allows", "among", "another", "buildings", "built", "cases", "code", "constructed", "control", "controls", "cost", "create", "developers", "development", "fees", "financial", "functions", "incentives", "indicates", "local"....
0.300
affectagenciesboundarycreatingdistributiondrainageenvironmentalfunctionslandlandownersmanagementnaturalplanningplansprocessprogramsprojectsqualityresourcesrights
SHARED TOKENS (26): "affect", "agencies", "boundary", "creating", "distribution", "drainage", "environmental", "functions", "land", "landowners", "management", "natural", "planning", "plans", "process", "programs", "projects", "quality", "resources", "rights"....
0.300
amongassociationbecomedevelopmentdistributionefficiencyhouseholdincreaseinternationalnationalnaturalpowerrapidresourcessupplies
SHARED TOKENS (15): "among", "association", "become", "development", "distribution", "efficiency", "household", "increase", "international", "national", "natural", "power", "rapid", "resources", "supplies".
0.300
administrationaffectsassetbuildingbusinesscoordinatedepartmentdevelopmentemergencyfederalfundinggovernmentsinfrastructurelocalmajormanagementpersonnelplanpropertyprovide
SHARED TOKENS (26): "administration", "affects", "asset", "building", "business", "coordinate", "department", "development", "emergency", "federal", "funding", "governments", "infrastructure", "local", "major", "management", "personnel", "plan", "property", "provide"....
0.300
actualadministrativeappliedappliesapprovalassessmentassociationcommitmentsdecisionsdefinesdevelopmentenvironmentalgovernedinternationalmajormakingmanagementmoveparticipationplan
SHARED TOKENS (36): "actual", "administrative", "applied", "applies", "approval", "assessment", "association", "commitments", "decisions", "defines", "development", "environmental", "governed", "international", "major", "making", "management", "move", "participation", "plan"....
0.300
americanbuildingcodescommercialdesigneddevelopmentdistrictenvironmentalflexibilityindustriallandparksplannedplanningplansprocessrecreationresidentialrightssite
SHARED TOKENS (26): "american", "building", "codes", "commercial", "designed", "development", "district", "environmental", "flexibility", "industrial", "land", "parks", "planned", "planning", "plans", "process", "recreation", "residential", "rights", "site"....
0.300
businessescapacitychangechangescostdemanddirectdirectlyeconomicexplicitfailsimplicationincentiveslargemanagementnetnetworksplannedpowerproduction
SHARED TOKENS (31): "businesses", "capacity", "change", "changes", "cost", "demand", "direct", "directly", "economic", "explicit", "fails", "implication", "incentives", "large", "management", "net", "networks", "planned", "power", "production"....
0.300
Energy conservation ↗ KW CROSS HIGH
activitiesaffectanothercomponentsconservationconvertcosteconomicefficiencyengineeringenvironmentalfootprintformgrowthidentifylargemonitoringoperationsprofilereduce
SHARED TOKENS (26): "activities", "affect", "another", "components", "conservation", "convert", "cost", "economic", "efficiency", "engineering", "environmental", "footprint", "form", "growth", "identify", "large", "monitoring", "operations", "profile", "reduce"....
0.300
affectagriculturalagriculturechangecivilconnectconservationconstructioncontrolcorridorecologyengineeringenvironmentalerosionevenfloodgroundwaterhabitatimprovementland
SHARED TOKENS (43): "affect", "agricultural", "agriculture", "change", "civil", "connect", "conservation", "construction", "control", "corridor", "ecology", "engineering", "environmental", "erosion", "even", "flood", "groundwater", "habitat", "improvement", "land"....
0.300
becomebusinesscentralcommercialcreatingdevelopmentfinancialhistoryindependentindividualinstitutionsmultipleorganizationsownersprojectprojectsrisksource
SHARED TOKENS (18): "become", "business", "central", "commercial", "creating", "development", "financial", "history", "independent", "individual", "institutions", "multiple", "organizations", "owners", "project", "projects", "risk", "source".
0.300
approximatelydesignedfacilitiesinfrastructuremunicipalproducespropertypublicsepticservedsystemstreatmentunitswastewaterwestern
SHARED TOKENS (15): "approximately", "designed", "facilities", "infrastructure", "municipal", "produces", "property", "public", "septic", "served", "systems", "treatment", "units", "wastewater", "western".
0.300
againstamongappliedauthoritycasesconstrainconstructiondistrictdistrictseconomiceconomyenvironmentalexplicitlygovernmentshomesincreasejurisdictionlandlocalmajor
SHARED TOKENS (37): "against", "among", "applied", "authority", "cases", "constrain", "construction", "district", "districts", "economic", "economy", "environmental", "explicitly", "governments", "homes", "increase", "jurisdiction", "land", "local", "major"....
0.300
amongcapacitycommunitydistributedemploymentincreasinglyindividuallargestlocaloverviewpercentplanspowerprojectrequiringresearchscalesetsouthwestsystem
SHARED TOKENS (23): "among", "capacity", "community", "distributed", "employment", "increasingly", "individual", "largest", "local", "overview", "percent", "plans", "power", "project", "requiring", "research", "scale", "set", "southwest", "system"....
0.300
changedeliverydemanddirectlydistributionelectricalforecastgrowthhomesmeanspowerprocessproductionproposedreportedsupplyutilitieswater
SHARED TOKENS (18): "change", "delivery", "demand", "directly", "distribution", "electrical", "forecast", "growth", "homes", "means", "power", "process", "production", "proposed", "reported", "supply", "utilities", "water".
0.300
amongcapacitycleanconstructedconstructioncreatingdemanddirectecologyelectricalenvironmentalerosionlandlargelargestmakingnaturalnearlypopulationpower
SHARED TOKENS (31): "among", "capacity", "clean", "constructed", "construction", "creating", "demand", "direct", "ecology", "electrical", "environmental", "erosion", "land", "large", "largest", "making", "natural", "nearly", "population", "power"....
0.300
connectscurrentdeliverydirectdirectlydistinctdistributioneasternefficiencyelectricalevenformincreaselineslocalmajormarketmovementnetworkowned
SHARED TOKENS (25): "connects", "current", "delivery", "direct", "directly", "distinct", "distribution", "eastern", "efficiency", "electrical", "even", "form", "increase", "lines", "local", "major", "market", "movement", "network", "owned"....
0.300
administrationboisebuiltcanyoncapacitycontainscontractordrainagefallsfeetfinalidahoinformationlargestoperatedownedpowerprojectreservoirriver
SHARED TOKENS (22): "administration", "boise", "built", "canyon", "capacity", "contains", "contractor", "drainage", "falls", "feet", "final", "idaho", "information", "largest", "operated", "owned", "power", "project", "reservoir", "river"....
0.300
Off-the-grid ↗ Q267162 KW CROSS HIGH
allowsbuildingbuildingscannotconnectedcostdesignedelectricalenvironmentalgenerallyhomesindependentisolateditselfpublicreduceresidentialscalesewersupply
SHARED TOKENS (24): "allows", "building", "buildings", "cannot", "connected", "cost", "designed", "electrical", "environmental", "generally", "homes", "independent", "isolated", "itself", "public", "reduce", "residential", "scale", "sewer", "supply"....
0.300
communitydevelopmentdirectlydistricteconomicfinancingfutureimprovementincrementinfrastructuremunicipalitiesneedprivateprogramprojectprojectspropertypublicrelatedrevenue
SHARED TOKENS (22): "community", "development", "directly", "district", "economic", "financing", "future", "improvement", "increment", "infrastructure", "municipalities", "need", "private", "program", "project", "projects", "property", "public", "related", "revenue"....
0.300
Water metering ↗ Q268503 KW CROSS HIGH
americanassociationbuildingcommercialdeterminefeetoutsideprocesspublicrapidlyratesrequirementsresidentialsetstandardssupplysystemtechnologyunitsvolume
SHARED TOKENS (22): "american", "association", "building", "commercial", "determine", "feet", "outside", "process", "public", "rapidly", "rates", "requirements", "residential", "set", "standards", "supply", "system", "technology", "units", "volume"....
0.300
associatedbuildingcodecodescommissioncontrolcurrentdesigndesigneddistributionelectricalenvironmentalexposurefireinternationallargelocalmodelnationaloperating
SHARED TOKENS (31): "associated", "building", "code", "codes", "commission", "control", "current", "design", "designed", "distribution", "electrical", "environmental", "exposure", "fire", "international", "large", "local", "model", "national", "operating"....
0.300
cabledistributiondrainslinesmajornationalnaturalpipelinesprocesspublicstreettrafficutilitywastewaterwater
SHARED TOKENS (15): "cable", "distribution", "drains", "lines", "major", "national", "natural", "pipelines", "process", "public", "street", "traffic", "utility", "wastewater", "water".
0.300
buildingbuildingscontrolcostsdesigndesignedefficiencyelectricalengineersenvironmentalevaluateintegratemodelingoperatingperformanceprojectsprovidequalityregulatesystems
SHARED TOKENS (22): "building", "buildings", "control", "costs", "design", "designed", "efficiency", "electrical", "engineers", "environmental", "evaluate", "integrate", "modeling", "operating", "performance", "projects", "provide", "quality", "regulate", "systems"....
0.300
analysisassessmentcapacitycollectioncostcostscurrentdatademandemploymentengineeringenvironmentalfinancialforecastforecastingfutureinfrastructuremodelplannedplanning
SHARED TOKENS (27): "analysis", "assessment", "capacity", "collection", "cost", "costs", "current", "data", "demand", "employment", "engineering", "environmental", "financial", "forecast", "forecasting", "future", "infrastructure", "model", "planned", "planning"....
0.300
actualcaseschangechangescontrolcontrolledcontrolsintendedmaintainmaintainsmechanismparallelpressureprovidereducingregulatedresponseseparatesetvalue
SHARED TOKENS (20): "actual", "cases", "change", "changes", "control", "controlled", "controls", "intended", "maintain", "maintains", "mechanism", "parallel", "pressure", "provide", "reducing", "regulated", "response", "separate", "set", "value".
0.300
advantagebuildingscommercialdirectlydrainsgroundwaterindustrialinfrastructuremunicipalitiesseparateservedservingsewersmallerstormwatersystemsystemstreatmenturbanwastewater
SHARED TOKENS (21): "advantage", "buildings", "commercial", "directly", "drains", "groundwater", "industrial", "infrastructure", "municipalities", "separate", "served", "serving", "sewer", "smaller", "stormwater", "system", "systems", "treatment", "urban", "wastewater"....
0.300
actactiveactivitiesadministeredagenciesapproximatelyauthoritybuildingbusinesscanalscapacitycivilcleancomponentsconstructconstructioncontroldepartmentdesigndesigning
SHARED TOKENS (64): "act", "active", "activities", "administered", "agencies", "approximately", "authority", "building", "business", "canals", "capacity", "civil", "clean", "components", "construct", "construction", "control", "department", "design", "designing"....
0.300
conservationdesignedeconomyefficiencyelectricalmodesnetperformancepotentialpowerprocessproducesreducingsourcetransportationvisiblework
SHARED TOKENS (17): "conservation", "designed", "economy", "efficiency", "electrical", "modes", "net", "performance", "potential", "power", "process", "produces", "reducing", "source", "transportation", "visible", "work".
0.300
agriculturalagriculturebuildingcablecostdesigndeveloperdevelopmententitylandlandsnaturaloperatorprivatepropertiespublicratherrelatedruralsite
SHARED TOKENS (22): "agricultural", "agriculture", "building", "cable", "cost", "design", "developer", "development", "entity", "land", "lands", "natural", "operator", "private", "properties", "public", "rather", "related", "rural", "site"....
0.300
Eminent domain ↗ Q166332 KW CROSS HIGH
acquisitionanotherapplicationbuildingsconnectdevelopmenteasementsevenfeefinalfunctionslandlegalmunicipalitiesnetworksownerownersownershippowerprivate
SHARED TOKENS (31): "acquisition", "another", "application", "buildings", "connect", "development", "easements", "even", "fee", "final", "functions", "land", "legal", "municipalities", "networks", "owner", "owners", "ownership", "power", "private"....
0.300
anotherbecomesbeyondcapacitychangeconnectedcostdemandeconomiceconomicselectricalexperienceflexibilityformlargelargestmakingmanagementneedneeded
SHARED TOKENS (29): "another", "becomes", "beyond", "capacity", "change", "connected", "cost", "demand", "economic", "economics", "electrical", "experience", "flexibility", "form", "large", "largest", "making", "management", "need", "needed"....
0.300
Solar power ↗ Q1483757 KW CROSS HIGH
applicationsbuiltcapacitychangecommercialcontinuingconvertcostcurrentdirectlyfinancinghomesintegrationinternationallargelargestneededpolicypowerproduces
SHARED TOKENS (26): "applications", "built", "capacity", "change", "commercial", "continuing", "convert", "cost", "current", "directly", "financing", "homes", "integration", "international", "large", "largest", "needed", "policy", "power", "produces"....
0.300
Spot zoning ↗ Q3494193 KW CROSS HIGH
actallowinganotherapplicationauthorityboundariesbuildingchangecommercialcommissioncommunitycontrolcreatingcurrentdistrictdistrictsindustriallandlayerlocal
SHARED TOKENS (46): "act", "allowing", "another", "application", "authority", "boundaries", "building", "change", "commercial", "commission", "community", "control", "creating", "current", "district", "districts", "industrial", "land", "layer", "local"....
0.300
activecapacityconnectioncontrolcostcostsdemanddesignedelectricalevenextendingformgenerallygroupindividualinsidelargelargestoperatingplaced
SHARED TOKENS (31): "active", "capacity", "connection", "control", "cost", "costs", "demand", "designed", "electrical", "even", "extending", "form", "generally", "group", "individual", "inside", "large", "largest", "operating", "placed"....
0.300
boisebureaucanalcapacitycomponentsdesigneddistrictfarmlandidahoirrigationnampanationalprogramprojectprovidereclamationriversettreasurevalley
SHARED TOKENS (22): "boise", "bureau", "canal", "capacity", "components", "designed", "district", "farmland", "idaho", "irrigation", "nampa", "national", "program", "project", "provide", "reclamation", "river", "set", "treasure", "valley"....
0.300
administrativeagreementagricultureapplicablearrangementchaincomplianceconservationconstraincorridorscreatesdevelopmenteasementsentityestatefederalfinancialfuturegenerallygrants
SHARED TOKENS (57): "administrative", "agreement", "agriculture", "applicable", "arrangement", "chain", "compliance", "conservation", "constrain", "corridors", "creates", "development", "easements", "entity", "estate", "federal", "financial", "future", "generally", "grants"....
0.300
authorizationcenterdepartmentdevelopmentefficiencyfundedhomeintegrationjointnationaloperatedresearchsystemstechnologytransportation
SHARED TOKENS (15): "authorization", "center", "department", "development", "efficiency", "funded", "home", "integration", "joint", "national", "operated", "research", "systems", "technology", "transportation".
0.300
New Urbanism ↗ Q735901 KW CROSS HIGH
addressarchitectureassociatedbuildingcommunitycreatingdesigndevelopmentestatefacilitiesincreaseinfrastructurelandland-usemovementmunicipalplanningpopulationpromotesreal
SHARED TOKENS (27): "address", "architecture", "associated", "building", "community", "creating", "design", "development", "estate", "facilities", "increase", "infrastructure", "land", "land-use", "movement", "municipal", "planning", "population", "promotes", "real"....
0.300
communitycompletedesigndesignedeconomicengineersenvironmentalhomeoperatedplannedpolicypublicrelatedrequiressafesafetytraffictransportationurban
SHARED TOKENS (19): "community", "complete", "design", "designed", "economic", "engineers", "environmental", "home", "operated", "planned", "policy", "public", "related", "requires", "safe", "safety", "traffic", "transportation", "urban".
0.300
authoritybasebecomesbusinesscapitalcommunityconsumercostdeliverydistributedformgovernedgrowthindividualinfrastructurelargelocalmarketsmeansnational
SHARED TOKENS (38): "authority", "base", "becomes", "business", "capital", "community", "consumer", "cost", "delivery", "distributed", "form", "governed", "growth", "individual", "infrastructure", "large", "local", "markets", "means", "national"....
0.300
commercialconnectconnecteddeliverydirectlydistributionfinalfunctionsgroundhouseholdindividualindustriallightinglinesmultiplepowerresidentialruralsystemurban
SHARED TOKENS (21): "commercial", "connect", "connected", "delivery", "directly", "distribution", "final", "functions", "ground", "household", "individual", "industrial", "lighting", "lines", "multiple", "power", "residential", "rural", "system", "urban"....
0.300
acquireactapprovalapprovedbuildingcommercialconstructioncontractorscostscreatesdesigndeterminedeveloperdevelopersdevelopmentdifferenteconomicengineersenvironmentalestate
SHARED TOKENS (45): "acquire", "act", "approval", "approved", "building", "commercial", "construction", "contractors", "costs", "creates", "design", "determine", "developer", "developers", "development", "different", "economic", "engineers", "environmental", "estate"....
0.300
Water supply ↗ Q1061108 KW CROSS HIGH
agriculturecapitalcommercialcommunitycostcostsdependdifferentinstitutionalirrigationlargepersonnelpolicypressureproviderspublicqualityregulationresponsibilityrural
SHARED TOKENS (29): "agriculture", "capital", "commercial", "community", "cost", "costs", "depend", "different", "institutional", "irrigation", "large", "personnel", "policy", "pressure", "providers", "public", "quality", "regulation", "responsibility", "rural"....
🫐 BERRY28 edges
0.280
capitalcostcostsdistributionelectricalincreaselinesoperatingpowerqualityreducerisksupplywildfire
SHARED TOKENS (14): "capital", "cost", "costs", "distribution", "electrical", "increase", "lines", "operating", "power", "quality", "reduce", "risk", "supply", "wildfire".
0.280
firmlargestmajorsupply
SHARED TOKENS (4): "firm", "largest", "major", "supply". | EXACT TITLE in land_use_planning: "Sekisui House".
0.280
Right to property ↗ KW CROSS HIGH
civilculturaleconomicindividualinternationallegalnaturalownershippersonprivatepropertyprotectionrightrights
SHARED TOKENS (14): "civil", "cultural", "economic", "individual", "international", "legal", "natural", "ownership", "person", "private", "property", "protection", "right", "rights".
0.260
Black start ↗ Q655257 KW CROSS HIGH
agreementanotherelectricalemergencyindustriallargenetworkoperationpowerprocessrequirestechnologyunits
SHARED TOKENS (13): "agreement", "another", "electrical", "emergency", "industrial", "large", "network", "operation", "power", "process", "requires", "technology", "units".
0.260
civilformallaw
SHARED TOKENS (3): "civil", "formal", "law". | EXACT TITLE in land_use_planning: "Hearing (law)".
0.260
agricultureconstructioncontrolcontrollingcontrolsdevelopmenterosionhabitatlandpropertyriversoilwater
SHARED TOKENS (13): "agriculture", "construction", "control", "controlling", "controls", "development", "erosion", "habitat", "land", "property", "river", "soil", "water".
0.240
approximatelyboisedatadistrictdistrictsevenidahopopulationresidentssinglesouthsubsequent
SHARED TOKENS (12): "approximately", "boise", "data", "district", "districts", "even", "idaho", "population", "residents", "single", "south", "subsequent".
0.240
Solar inverter ↗ Q129316 KW CROSS HIGH
allowingcommercialcurrentdirectelectricalfunctionslocalnetworkpowerprotectionsystemutility
SHARED TOKENS (12): "allowing", "commercial", "current", "direct", "electrical", "functions", "local", "network", "power", "protection", "system", "utility".
0.220
applicationscivilconstructionengineeringknowledgematerialsoverlappingrelatedsoilstudyuses
SHARED TOKENS (11): "applications", "civil", "construction", "engineering", "knowledge", "materials", "overlapping", "related", "soil", "study", "uses".
0.220
capacitycategoriesdistributionelectricallinesneededpowerstructuresupportutilitywater
SHARED TOKENS (11): "capacity", "categories", "distribution", "electrical", "lines", "needed", "power", "structure", "support", "utility", "water".
0.200
topics
EXACT TITLE in energy_utilities: "Suez (disambiguation)".
0.200
additionalcaseshomeprincipalpropertyprovidereceiveresidentialseparatesupport
SHARED TOKENS (10): "additional", "cases", "home", "principal", "property", "provide", "receive", "residential", "separate", "support".
0.200
Star, Idaho ↗ Q1516815 KW CROSS HIGH
adaboisecanyondistrictidahometropolitanpopulationrapidlyschoolschools
SHARED TOKENS (10): "ada", "boise", "canyon", "district", "idaho", "metropolitan", "population", "rapidly", "school", "schools".
0.200
Power station ↗ Q159719 KW CROSS HIGH
connectedcreatescurrentelectricalfieldgenerallyindustrialnaturalpowersource
SHARED TOKENS (10): "connected", "creates", "current", "electrical", "field", "generally", "industrial", "natural", "power", "source".
0.200
administersdepartmentdepartmentsdevelopmentdirectlyfederalfinancinghomeprogramurban
SHARED TOKENS (10): "administers", "department", "departments", "development", "directly", "federal", "financing", "home", "program", "urban".
0.200
boisedowntownfallshomeidahomajormetropolitanriverrouteserves
SHARED TOKENS (10): "boise", "downtown", "falls", "home", "idaho", "major", "metropolitan", "river", "route", "serves".
0.180
adaboiseidahometropolitanmunicipalnearlypopulationseparatestreet
SHARED TOKENS (9): "ada", "boise", "idaho", "metropolitan", "municipal", "nearly", "population", "separate", "street".
0.180
activitybuiltenvironmentallandnaturalpublicriskurbanwildfire
SHARED TOKENS (9): "activity", "built", "environmental", "land", "natural", "public", "risk", "urban", "wildfire".
0.160
hazardousinternationallocalmaterialsmillionnationalproducesregulated
SHARED TOKENS (8): "hazardous", "international", "local", "materials", "million", "national", "produces", "regulated".
0.160
actualcurrentestatemarketproducepropertyrealvalue
SHARED TOKENS (8): "actual", "current", "estate", "market", "produce", "property", "real", "value".
0.160
formalprocesspublicratesregulatorysetutilitiesutility
SHARED TOKENS (8): "formal", "process", "public", "rates", "regulatory", "set", "utilities", "utility".
0.160
collectionmanagementmaterialsmunicipalprocessprogramtransfertreatment
SHARED TOKENS (8): "collection", "management", "materials", "municipal", "process", "program", "transfer", "treatment".
0.140
Effluent ↗ Q1057706 KW CROSS HIGH
differentdirectlyindustrialriversourcewastewaterwaters
SHARED TOKENS (7): "different", "directly", "industrial", "river", "source", "wastewater", "waters".
0.140
codedefinitionmunicipalmunicipalitiespublicroleseparately
SHARED TOKENS (7): "code", "definition", "municipal", "municipalities", "public", "role", "separately".
0.140
constructionitselfmaterialsmeaningpropertyrealtitle
SHARED TOKENS (7): "construction", "itself", "materials", "meaning", "property", "real", "title".
0.140
businessdevelopmentestateindustrialofficeplannedrather
SHARED TOKENS (7): "business", "development", "estate", "industrial", "office", "planned", "rather".
0.120
changemakingratherrelationshipssystemsystems
SHARED TOKENS (6): "change", "making", "rather", "relationships", "system", "systems".
0.120
cannotconservationhabitatmanagementpriorityprotect
SHARED TOKENS (6): "cannot", "conservation", "habitat", "management", "priority", "protect".
◈ Frequently Asked Questions
Land Use Planning × Energy Utilities — Treasure Valley
HAIKU · HIGH GATE
How do Ada County building codes affect energy utility infrastructure placement in new developments?
Ada County building codes establish setback and safety requirements that directly constrain where public utility companies can route electrical and gas lines through residential and commercial zones. Energy utilities in the Treasure Valley must coordinate infrastructure placement with land use planning departments to ensure new subdivisions comply with these codes while maintaining service capacity for the region's growing population.
What role does the Bureau of Reclamation play in coordinating water infrastructure with energy utilities across the Treasure Valley?
The Bureau of Reclamation manages Arrowrock Dam and the canal systems that supply irrigation water to the Treasure Valley, and these water systems directly impact where energy utilities can develop hydroelectric generation and cooling infrastructure. Land use planning in Boise and surrounding Ada County areas must account for the Bureau of Reclamation's water allocation decisions when siting new power generation or transmission facilities.
How does the Clean Water Act influence where energy utilities can locate wastewater treatment facilities in the Treasure Valley?
The Clean Water Act establishes discharge standards that require energy utilities and public utilities to plan wastewater facilities in zones designated by Ada County land use planning that protect the Boise River and groundwater aquifers. Stormwater and wastewater infrastructure for power plants and utility operations must align with Clean Water Act compliance zones identified in Treasure Valley land use maps.
Why must energy utilities consult with Boise State University and College of Western Idaho during Treasure Valley land use planning reviews?
Boise State University and College of Western Idaho conduct civil engineering research on aquifer recharge and groundwater impacts that directly inform how energy utilities can develop infrastructure without compromising the region's water supply. Land use planning decisions for utility substations, generating facilities, and transmission corridors in the metropolitan Boise area require technical input from these institutions to assess groundwater and canal system interactions.
◈ Provenance Chain · refinery-treasurevalley-v1.0.0
Land Use Planning × Energy Utilities 38 QID bridges 240 edges 6,073 ext links 2026-07-17 21:40:23 UTC cbb103af2c39afdb
Land Use Planning corridor ↗ Energy Utilities corridor ↗ Energy Utilities × Land Use Planning ↗ boisestandard.org/standard ↗
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