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  1. Title: Heat Flow, Azerbaijan

    Contributors:

    Summary: This point shapefile contains heat flow data for Azerbaijan compiled from sources with an unknown date. Heat flow is a measure of heat loss across the surface of the Earth and is useful for modeling recent tectonic activity, transport of heat by groundwater, variations in concentrations of the radiogenic elements U, Th and K, glacial dynamics, and recent changes in climate. See attibute table and supplemental documentation for more detail. Global heat flow data are maintained by the International Heat Flow Commission (IHFC) of the International Association of Seismology and Physics of the Earth's Interior (IASPEI). Heat Flow, Azerbaijan (2016) .Global Heatflow database from the International Heat Flow Commission 2011. http://purl.stanford.edu/cj149vc4113 This layer is presented in the WGS84 coordinate system for web display purposes. Downloadable data are provided in native coordinate system or projection.

  2. Title: Heat Flow, Moldova

    Contributors:

    Summary: This point shapefile contains heat flow data for Moldova compiled from sources with an unknown date. Heat flow is a measure of heat loss across the surface of the Earth and is useful for modeling recent tectonic activity, transport of heat by groundwater, variations in concentrations of the radiogenic elements U, Th and K, glacial dynamics, and recent changes in climate. See attibute table and supplemental documentation for more detail. Global heat flow data are maintained by the International Heat Flow Commission (IHFC) of the International Association of Seismology and Physics of the Earth's Interior (IASPEI). Heat Flow, Moldova (2016) .Global Heatflow database from the International Heat Flow Commission 2011. http://purl.stanford.edu/sp619hw5988 This layer is presented in the WGS84 coordinate system for web display purposes. Downloadable data are provided in native coordinate system or projection.

  3. Title: Heat Flow, Armenia

    Contributors:

    Summary: This point shapefile contains heat flow data for Armenia compiled from sources with an unknown date. Heat flow is a measure of heat loss across the surface of the Earth and is useful for modeling recent tectonic activity, transport of heat by groundwater, variations in concentrations of the radiogenic elements U, Th and K, glacial dynamics, and recent changes in climate. See attibute table and supplemental documentation for more detail. Global heat flow data are maintained by the International Heat Flow Commission (IHFC) of the International Association of Seismology and Physics of the Earth's Interior (IASPEI). Heat Flow, Armenia (2016) .Global Heatflow database from the International Heat Flow Commission 2011. http://purl.stanford.edu/rf898rb7301 This layer is presented in the WGS84 coordinate system for web display purposes. Downloadable data are provided in native coordinate system or projection.

  4. Title: Heat Flow, Latvia

    Contributors:

    Summary: This point shapefile contains heat flow data for Latvia compiled from sources with an unknown date. Heat flow is a measure of heat loss across the surface of the Earth and is useful for modeling recent tectonic activity, transport of heat by groundwater, variations in concentrations of the radiogenic elements U, Th and K, glacial dynamics, and recent changes in climate. See attibute table and supplemental documentation for more detail. Global heat flow data are maintained by the International Heat Flow Commission (IHFC) of the International Association of Seismology and Physics of the Earth's Interior (IASPEI). Heat Flow, Latvia (2016) .Global Heatflow database from the International Heat Flow Commission 2011. http://purl.stanford.edu/wb713cd0031 This layer is presented in the WGS84 coordinate system for web display purposes. Downloadable data are provided in native coordinate system or projection.

  5. Title: Heat Flow, Georgia

    Contributors:

    Summary: This point shapefile contains heat flow data for Georgia compiled from sources with an unknown date. Heat flow is a measure of heat loss across the surface of the Earth and is useful for modeling recent tectonic activity, transport of heat by groundwater, variations in concentrations of the radiogenic elements U, Th and K, glacial dynamics, and recent changes in climate. See attibute table and supplemental documentation for more detail. Global heat flow data are maintained by the International Heat Flow Commission (IHFC) of the International Association of Seismology and Physics of the Earth's Interior (IASPEI). Heat Flow, Georgia (2016) .Global Heatflow database from the International Heat Flow Commission 2011. http://purl.stanford.edu/sg777cy9495 This layer is presented in the WGS84 coordinate system for web display purposes. Downloadable data are provided in native coordinate system or projection.

  6. Title: Heat Flow, Ukraine

    Contributors:

    Summary: This point shapefile contains heat flow data for Ukraine compiled from sources with an unknown date. Heat flow is a measure of heat loss across the surface of the Earth and is useful for modeling recent tectonic activity, transport of heat by groundwater, variations in concentrations of the radiogenic elements U, Th and K, glacial dynamics, and recent changes in climate. See attibute table and supplemental documentation for more detail. Global heat flow data are maintained by the International Heat Flow Commission (IHFC) of the International Association of Seismology and Physics of the Earth's Interior (IASPEI). Heat Flow, Ukraine (2016) .Global Heatflow database from the International Heat Flow Commission 2011. http://purl.stanford.edu/vh521cc4678 This layer is presented in the WGS84 coordinate system for web display purposes. Downloadable data are provided in native coordinate system or projection.

  7. Title: Heat Flow, Estonia

    Contributors:

    Summary: This point shapefile contains heat flow data for Estonia compiled from sources with an unknown date. Heat flow is a measure of heat loss across the surface of the Earth and is useful for modeling recent tectonic activity, transport of heat by groundwater, variations in concentrations of the radiogenic elements U, Th and K, glacial dynamics, and recent changes in climate. See attibute table and supplemental documentation for more detail. Global heat flow data are maintained by the International Heat Flow Commission (IHFC) of the International Association of Seismology and Physics of the Earth's Interior (IASPEI). Heat Flow, Estonia (2016) .Global Heatflow database from the International Heat Flow Commission 2011. http://purl.stanford.edu/kd680dz7935 This layer is presented in the WGS84 coordinate system for web display purposes. Downloadable data are provided in native coordinate system or projection.

  8. Title: Heat Flow, Tajikistan

    Contributors:

    Summary: This point shapefile contains heat flow data for Tajikistan compiled from sources with an unknown date. Heat flow is a measure of heat loss across the surface of the Earth and is useful for modeling recent tectonic activity, transport of heat by groundwater, variations in concentrations of the radiogenic elements U, Th and K, glacial dynamics, and recent changes in climate. See attibute table and supplemental documentation for more detail. Global heat flow data are maintained by the International Heat Flow Commission (IHFC) of the International Association of Seismology and Physics of the Earth's Interior (IASPEI). Heat Flow, Tajikistan (2016) .Global Heatflow database from the International Heat Flow Commission 2011. http://purl.stanford.edu/kv971cf1984 This layer is presented in the WGS84 coordinate system for web display purposes. Downloadable data are provided in native coordinate system or projection.

  9. Title: Heat Flow, Uzbekistan

    Contributors:

    Summary: This point shapefile contains heat flow data for Uzbekistan compiled from sources dating with an unknown date. Heat flow is a measure of heat loss across the surface of the Earth and is useful for modeling recent tectonic activity, transport of heat by groundwater, variations in concentrations of the radiogenic elements U, Th and K, glacial dynamics, and recent changes in climate. See attibute table and supplemental documentation for more detail. Global heat flow data are maintained by the International Heat Flow Commission (IHFC) of the International Association of Seismology and Physics of the Earth's Interior (IASPEI). Heat Flow, Uzbekistan (2016) .Global Heatflow database from the International Heat Flow Commission 2011. http://purl.stanford.edu/pz259qs9185 This layer is presented in the WGS84 coordinate system for web display purposes. Downloadable data are provided in native coordinate system or projection.

  10. Title: Heat Flow, Lithuania

    Contributors:

    Summary: This point shapefile contains heat flow data for Lithuania compiled from sources with an unknown date. Heat flow is a measure of heat loss across the surface of the Earth and is useful for modeling recent tectonic activity, transport of heat by groundwater, variations in concentrations of the radiogenic elements U, Th and K, glacial dynamics, and recent changes in climate. See attibute table and supplemental documentation for more detail. Global heat flow data are maintained by the International Heat Flow Commission (IHFC) of the International Association of Seismology and Physics of the Earth's Interior (IASPEI). Heat Flow, Lithuania (2016) .Global Heatflow database from the International Heat Flow Commission 2011. http://purl.stanford.edu/zr794bb4542 This layer is presented in the WGS84 coordinate system for web display purposes. Downloadable data are provided in native coordinate system or projection.

  11. Title: Heat Flow, Turkmenistan

    Contributors:

    Summary: This point shapefile contains heat flow data for Turkmenistan compiled from sources with an unknown date. Heat flow is a measure of heat loss across the surface of the Earth and is useful for modeling recent tectonic activity, transport of heat by groundwater, variations in concentrations of the radiogenic elements U, Th and K, glacial dynamics, and recent changes in climate. See attibute table and supplemental documentation for more detail. Global heat flow data are maintained by the International Heat Flow Commission (IHFC) of the International Association of Seismology and Physics of the Earth's Interior (IASPEI). Heat Flow, Turkmenistan (2016) .Global Heatflow database from the International Heat Flow Commission 2011. http://purl.stanford.edu/gw106bn2135 This layer is presented in the WGS84 coordinate system for web display purposes. Downloadable data are provided in native coordinate system or projection.

  12. Title: Heat Flow, Belarus

    Contributors:

    Summary: This point shapefile contains heat flow data for Belarus compiled from sources with an unknown date . Heat flow is a measure of heat loss across the surface of the Earth and is useful for modeling recent tectonic activity, transport of heat by groundwater, variations in concentrations of the radiogenic elements U, Th and K, glacial dynamics, and recent changes in climate. See attibute table and supplemental documentation for more detail. Global heat flow data are maintained by the International Heat Flow Commission (IHFC) of the International Association of Seismology and Physics of the Earth's Interior (IASPEI). Heat Flow, Belarus (2016) .Global Heatflow database from the International Heat Flow Commission 2011. http://purl.stanford.edu/vt794zh6878 This layer is presented in the WGS84 coordinate system for web display purposes. Downloadable data are provided in native coordinate system or projection.

  13. Title: Land Use (Future) Walworth County, WI 2035

    Contributors:

    Summary: This data layer represents future land use for Walworth County, Wisconsin, to the year 2035.

  14. Title: Addresses Polk County, WI 2025

    Contributors:

    Summary: This data represents addresses for Polk County, Wisconsin in 2025.

  15. Title: Hydro (Polygon and Line) Polk County, WI 2025

    Contributors:

    Summary: This data represents hydrography for Polk County, Wisconsin in 2025 and includes the layers 'POLK_HYDRO_LINE_2025' and 'POLK_HYDRO_POLY_2025'.

  16. Title: Parks Polk County, WI 2025

    Contributors:

    Summary: This data layer represents parks for Polk County, Wisconsin in 2025.

  17. Title: PLSS Polk County, WI 2025

    Contributors:

    Summary: This data layer represents public land survey system (PLSS) corners for Polk County, Wisconsin in 2025.

  18. Title: Recreation Polk County, WI 2025

    Contributors:

    Summary: This data represents recreation for Polk County, Wisconsin in 2025. [Location of Recreation Amenities in Polk County, Wisconsin.]

  19. Title: Roads Polk County, WI 2025

    Contributors:

    Summary: This data represents roads for Polk County, Wisconsin in 2025. [Centerline map features of the roads within the County of Polk, Wisconsin. Each segment of the road includes the road name, road type, road direction (if applicable), address ranges, road code, postal community name, and zip code.The creation of the Polk County RURAL NUMBERING SYSTEM (POLK COUNTY FIRE NUMBER ADDRESS SYSTEM) was adopted by the Board of Supervisors of Polk County, Wisconsin in 1978. Each of the 24 Towns in Polk County participates in the address and road system. Each of the 12 cities and villages, within the geographic boundary of Polk County, has their own address and road system.The road centerline file includes address ranges per the adopted POLK COUNTY UNIFORM RURAL ADDRESSING AND ROAD NUMBERING ORDINANCE and the address and road system adopted by each City and Village in Polk County, Wisconsin.]

  20. Title: Trails Polk County, WI 2025

    Contributors:

    Summary: This data represents trails for Polk County, Wisconsin in 2025. [To identify the geographic locations of recreational trails throughout Polk County, Wisconsin.]

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