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This map shows the potential current distribution of mountain lion, in the context of current and near-term terrestrial intactness and long-term potential for climate change and energy development.
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This map shows naturalized flow change for April-July for 3 periods: 1951-1965 (historic), 2016-2030, and 2046-2060 simulated by the Bureau of Reclamation across 112 GCM scenarios.
This map presents summaries of conservation elements by reporting unit (4KM) alongside terrestrial intactness and long-term potential for change. This includes additional dataset focused on non-designated/non-urban lands, and non-designated/non-urban areas on BLM lands.
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This map shows potential alluvial aquifers based on sand, gravel, and alluvium types in the surficial geology datasets of Arizona, Colorado, New Mexico, and Utah.
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This map shows the potential current distribution of pronghorn antelope, in the context of current and near-term terrestrial intactness and long-term potential for climate change and energy development.
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This network of inland streams, wetlands and water bodies is a composite of two layers from the National Hydrography Dataset Plus (NHD+ flow lines and water bodies), and all available wetlands from the National Wetlands Inventory (NWI) and Wisconsin Wetlands Inventory (WWI). In combination, these layers provide a network template of inland corridors for assessing relative vulnerability to future invasions of Phragmites.
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The Energy Release Component (ERC) is a calculated output of the National Fire Danger Rating System (NFDRS). The ERC is a number related to the available energy (BTU) per unit area (square foot) within the flaming front at the head of a fire. The ERC is considered a composite fuel moisture index as it reflects the contribution of all live and dead fuels to potential fire intensity. As live fuels cure and dead fuels dry, the ERC will increase and can be described as a build-up index. The ERC has memory. Each daily calculation considers the past 7 days in calculating the new number. Daily variations of the ERC are relatively small as wind is not part of the calculation. The ERC is projected to the 2050s using three...
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This map shows the current distribution of this ecosystem (from NatureServe Landcover), in the context of current and near-term status and long term potential for change.
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This map shows distribution of the Gunnison Sage-Grouse relative to various protected areas.
Shapefiles showing the extent of the Dugger, Minshall-Buffaloville, Seelyville, and Springfield Coal Members derived from coal-test records, mine-map notation, and interpretations of geophysical logs. Information was included in the USGS National Coal Resources Data System (NCRDS).
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This map shows current and near-term terrestrial intactness, as well as long term potential for development and climate change. These datasets are the results of a series of fuzzy logic models that integrate many landscape factors, including urban, agriculture, roads, invasive vegetation, and fire regime.
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This map shows long-term potential for climate change, which was calculated using a logic model to integrate the factors of: vegetation change summer & winter temperature change annual precipitation change runoff change.
This map shows the potential current distribution of Colorado River Cutthroat Trout as well as current and near-term status, and long term potential for change (due to climate change).
This map shows the current and historic distribution of this ecosystem, in the context of change agents and disturbance types, as well as current and near-term status and long term potential for change. This map includes current distribution from LANDFIRE EVT and NatureServe Landcover, and historic distribution from LANDFIRE BpS.
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This map shows climate parameters and MAPSS biogeography model data for the western US from PRISM (1968-1999), and future climate projections from the regional climate model RegCM3 using ECHAM5, GENMOM, and GFDL projections as boundary conditions for 2015-2030, and 2045-2060.
This map shows soil factors that may contribute to wind or water erosion, derived from STATSGO and SSURGO soil data and slope information.
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This map shows areas dominated by major invasive vegetation species (tamarisk and cheatgrass), compiled from multiple source datasets including LANDFIRE existing vegetation type, NatureServe national landcover, USGS early season invasives (Hanson et al.), and tamarisk probability (Jarnevich et al.)
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Dataset consists of individual rasters, each describing a separate geochemical or geophysical attribute. See "Child Items" to browse and select desired rasters, download associated service definition file, and unzip to access rasters formatted as geoTiffs.
This map shows the potential current distribution of mule deer, in the context of current and near-term terrestrial intactness and long-term potential for climate change and energy development.


map background search result map search result map Inland Coastal Zone Corridor Network and Vulnerability to Invasive Phragmites Geochemical and Geophysical Characteristics of the Conterminous United States Colorado Plateau REA Change Agents - Climate Change Colorado Plateau REA Change Agents - Climate Change - Long-Term Potential For Change Colorado Plateau REA Conservation Elements - Aquatic Species: Colorado River Cutthroat Trout Colorado Plateau REA Conservation Elements - Ecological Integrity: Conservation Element Summary (4KM) Colorado Plateau REA Conservation Elements - Terrestrial Ecosystems: Inter-Mountain Basins Mixed Salt Desert Scrub Colorado Plateau REA Conservation Elements - Terrestrial Ecosystems: Inter-Mountain Basins Montane Sagebush Steppe Colorado Plateau REA Conservation Elements - Terrestrial Ecosystems: Riparian Vegetation Colorado Plateau REA Conservation Elements - Terrestrial Species: Mountain Lion Colorado Plateau REA Conservation Elements - Terrestrial Species: Mule Deer Colorado Plateau REA Conservation Elements - Terrestrial Species: Pronghorn Antelope Colorado Plateau REA Gunnison Sage-Grouse and Protected Areas Colorado Plateau REA Terrestrial Intactness and Potential For Change (HUC5) Colorado Plateau REA MQ A1: Where are soils susceptable to wind and water erosion? Colorado Plateau REA MQ B4: Where are the alluvial aquifers and their recharge areas (if known)? Colorado Plateau REA MQ F1: Where are areas dominated by major vegetation invasives? Colorado Plateau REA MQ J4: Where are aquatic/riparian areas with potential to change from climate change? Change from Historical in Number of Days with High Fire Risk (Energy Release Component > 95th percentile), RCP8.5, 2050s Pennsylvanian Paleosols Pennsylvanian Paleosols Change from Historical in Number of Days with High Fire Risk (Energy Release Component > 95th percentile), RCP8.5, 2050s Colorado Plateau REA Change Agents - Climate Change - Long-Term Potential For Change Colorado Plateau REA Conservation Elements - Ecological Integrity: Conservation Element Summary (4KM) Colorado Plateau REA Conservation Elements - Terrestrial Ecosystems: Inter-Mountain Basins Mixed Salt Desert Scrub Colorado Plateau REA Conservation Elements - Terrestrial Ecosystems: Inter-Mountain Basins Montane Sagebush Steppe Colorado Plateau REA Conservation Elements - Terrestrial Species: Mountain Lion Colorado Plateau REA Conservation Elements - Terrestrial Species: Mule Deer Colorado Plateau REA Conservation Elements - Terrestrial Species: Pronghorn Antelope Colorado Plateau REA MQ A1: Where are soils susceptable to wind and water erosion? Colorado Plateau REA MQ F1: Where are areas dominated by major vegetation invasives? Colorado Plateau REA MQ J4: Where are aquatic/riparian areas with potential to change from climate change? Colorado Plateau REA Terrestrial Intactness and Potential For Change (HUC5) Colorado Plateau REA Change Agents - Climate Change Colorado Plateau REA Conservation Elements - Aquatic Species: Colorado River Cutthroat Trout Colorado Plateau REA Conservation Elements - Terrestrial Ecosystems: Riparian Vegetation Colorado Plateau REA Gunnison Sage-Grouse and Protected Areas Colorado Plateau REA MQ B4: Where are the alluvial aquifers and their recharge areas (if known)? Inland Coastal Zone Corridor Network and Vulnerability to Invasive Phragmites Geochemical and Geophysical Characteristics of the Conterminous United States