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This tile of the 3D Elevation Program (3DEP) seamless products is 1 arc-second resolution. 3DEP data serves as the elevation layer of The National Map, and provides basic elevation information for earth science studies and mapping applications in the United States. Scientists and resource managers use 3DEP data for global change research, hydrologic modeling, resource monitoring, mapping and visualization, and many other applications. 3DEP data is an elevation dataset that consists of seamless layers and a high resolution layer. Each of these layers are composed of the best available raster elevation data of the conterminous United States, Alaska, Hawaii, territorial islands, Mexico and Canada. 3DEP data is updated...
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This tile of the 3D Elevation Program (3DEP) seamless products is 2 arc-second resolution. 3DEP data serves as the elevation layer of The National Map, and provides basic elevation information for earth science studies and mapping applications in the United States. Scientists and resource managers use 3DEP data for global change research, hydrologic modeling, resource monitoring, mapping and visualization, and many other applications. 3DEP data are an elevation dataset that consists of seamless layers and a high resolution layer. Each of these layers consists of the best available raster elevation data of the conterminous United States, Alaska, Hawaii, territorial islands, Mexico and Canada. 3DEP data are updated...
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This tile of the 3D Elevation Program (3DEP) seamless products is 1/3 arc-second resolution. 3DEP data serve as the elevation layer of The National Map, and provide basic elevation information for Earth science studies and mapping applications in the United States. Scientists and resource managers use 3DEP data for global change research, hydrologic modeling, resource monitoring, mapping and visualization, and many other applications. 3DEP data compose an elevation dataset that consists of seamless layers and a high resolution layer. Each of these layers consists of the best available raster elevation data of the conterminous United States, Alaska, Hawaii, territorial islands, Mexico and Canada. 3DEP data are updated...
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This tile of the 3D Elevation Program (3DEP) seamless products is 2 arc-second resolution. 3DEP data serve as the elevation layer of The National Map, and provide basic elevation information for Earth science studies and mapping applications in the United States. Scientists and resource managers use 3DEP data for global change research, hydrologic modeling, resource monitoring, mapping and visualization, and many other applications. 3DEP data compose an elevation dataset that consists of seamless layers and a high resolution layer. Each of these layers consists of the best available raster elevation data of the conterminous United States, Alaska, Hawaii, territorial islands, Mexico and Canada. 3DEP data are updated...
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This tile of the 3D Elevation Program (3DEP) seamless products is 1 arc-second resolution. 3DEP data serve as the elevation layer of The National Map, and provide basic elevation information for Earth science studies and mapping applications in the United States. Scientists and resource managers use 3DEP data for global change research, hydrologic modeling, resource monitoring, mapping and visualization, and many other applications. 3DEP data compose an elevation dataset that consists of seamless layers and a high resolution layer. Each of these layers consists of the best available raster elevation data of the conterminous United States, Alaska, Hawaii, territorial islands, Mexico and Canada. 3DEP data are updated...
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This tile of the 3D Elevation Program (3DEP) seamless products is 1 arc-second resolution. 3DEP data serve as the elevation layer of The National Map, and provide basic elevation information for Earth science studies and mapping applications in the United States. Scientists and resource managers use 3DEP data for global change research, hydrologic modeling, resource monitoring, mapping and visualization, and many other applications. 3DEP data compose an elevation dataset that consists of seamless layers and a high resolution layer. Each of these layers consists of the best available raster elevation data of the conterminous United States, Alaska, Hawaii, territorial islands, Mexico and Canada. 3DEP data are updated...
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This tile of the 3D Elevation Program (3DEP) seamless products is 1 arc-second resolution. 3DEP data serve as the elevation layer of The National Map, and provide basic elevation information for Earth science studies and mapping applications in the United States. Scientists and resource managers use 3DEP data for global change research, hydrologic modeling, resource monitoring, mapping and visualization, and many other applications. 3DEP data compose an elevation dataset that consists of seamless layers and a high resolution layer. Each of these layers consists of the best available raster elevation data of the conterminous United States, Alaska, Hawaii, territorial islands, Mexico and Canada. 3DEP data are updated...
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This tile of the 3D Elevation Program (3DEP) seamless products is 1 arc-second resolution. 3DEP data serve as the elevation layer of The National Map, and provide basic elevation information for Earth science studies and mapping applications in the United States. Scientists and resource managers use 3DEP data for global change research, hydrologic modeling, resource monitoring, mapping and visualization, and many other applications. 3DEP data compose an elevation dataset that consists of seamless layers and a high resolution layer. Each of these layers consists of the best available raster elevation data of the conterminous United States, Alaska, Hawaii, territorial islands, Mexico and Canada. 3DEP data are updated...
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This tile of the 3D Elevation Program (3DEP) seamless products is 1 arc-second resolution. 3DEP data serve as the elevation layer of The National Map, and provide basic elevation information for Earth science studies and mapping applications in the United States. Scientists and resource managers use 3DEP data for global change research, hydrologic modeling, resource monitoring, mapping and visualization, and many other applications. 3DEP data compose an elevation dataset that consists of seamless layers and a high resolution layer. Each of these layers consists of the best available raster elevation data of the conterminous United States, Alaska, Hawaii, territorial islands, Mexico and Canada. 3DEP data are updated...
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This tile of the 3D Elevation Program (3DEP) seamless products is 1/3 arc-second resolution. 3DEP data serve as the elevation layer of The National Map, and provide basic elevation information for Earth science studies and mapping applications in the United States. Scientists and resource managers use 3DEP data for global change research, hydrologic modeling, resource monitoring, mapping and visualization, and many other applications. 3DEP data compose an elevation dataset that consists of seamless layers and a high resolution layer. Each of these layers consists of the best available raster elevation data of the conterminous United States, Alaska, Hawaii, territorial islands, Mexico and Canada. 3DEP data are updated...
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This tile of the 3D Elevation Program (3DEP) seamless products is 1/3 arc-second resolution. 3DEP data serve as the elevation layer of The National Map, and provide basic elevation information for Earth science studies and mapping applications in the United States. Scientists and resource managers use 3DEP data for global change research, hydrologic modeling, resource monitoring, mapping and visualization, and many other applications. 3DEP data compose an elevation dataset that consists of seamless layers and a high resolution layer. Each of these layers consists of the best available raster elevation data of the conterminous United States, Alaska, Hawaii, territorial islands, Mexico and Canada. 3DEP data are updated...
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These vector contour lines are derived from the 3D Elevation Program using automated and semi-automated processes. They were created to support 1:24,000-scale CONUS and Hawaii, 1:25,000-scale Alaska, and 1:20,000-scale Puerto Rico / US Virgin Island topographic map products, but are also published in this GIS vector format. Contour intervals are assigned by 7.5-minute quadrangle, so this vector dataset is not visually seamless across quadrangle boundaries. The vector lines have elevation attributes (in feet above mean sea level on NAVD88), but this dataset does not carry line symbols or annotation.
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These vector contour lines are derived from the 3D Elevation Program using automated and semi-automated processes. They were created to support 1:24,000-scale CONUS and Hawaii, 1:25,000-scale Alaska, and 1:20,000-scale Puerto Rico / US Virgin Island topographic map products, but are also published in this GIS vector format. Contour intervals are assigned by 7.5-minute quadrangle, so this vector dataset is not visually seamless across quadrangle boundaries. The vector lines have elevation attributes (in feet above mean sea level on NAVD88), but this dataset does not carry line symbols or annotation.
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These vector contour lines are derived from the 3D Elevation Program using automated and semi-automated processes. They were created to support 1:24,000-scale CONUS and Hawaii, 1:25,000-scale Alaska, and 1:20,000-scale Puerto Rico / US Virgin Island topographic map products, but are also published in this GIS vector format. Contour intervals are assigned by 7.5-minute quadrangle, so this vector dataset is not visually seamless across quadrangle boundaries. The vector lines have elevation attributes (in feet above mean sea level on NAVD88), but this dataset does not carry line symbols or annotation.
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These vector contour lines are derived from the 3D Elevation Program using automated and semi-automated processes. They were created to support 1:24,000-scale CONUS and Hawaii, 1:25,000-scale Alaska, and 1:20,000-scale Puerto Rico / US Virgin Island topographic map products, but are also published in this GIS vector format. Contour intervals are assigned by 7.5-minute quadrangle, so this vector dataset is not visually seamless across quadrangle boundaries. The vector lines have elevation attributes (in feet above mean sea level on NAVD88), but this dataset does not carry line symbols or annotation.
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These vector contour lines are derived from the 3D Elevation Program using automated and semi-automated processes. They were created to support 1:24,000-scale CONUS and Hawaii, 1:25,000-scale Alaska, and 1:20,000-scale Puerto Rico / US Virgin Island topographic map products, but are also published in this GIS vector format. Contour intervals are assigned by 7.5-minute quadrangle, so this vector dataset is not visually seamless across quadrangle boundaries. The vector lines have elevation attributes (in feet above mean sea level on NAVD88), but this dataset does not carry line symbols or annotation.


map background search result map search result map USGS NED 1 arc-second n57w133 1 x 1 degree ArcGrid 2018 USGS NED 1 arc-second n31w086 1 x 1 degree ArcGrid 2017 USGS NED 2 arc-second n63w163 1 x 1 degree IMG 2017 USGS NED 1 arc-second n31w089 1 x 1 degree ArcGrid 2018 USGS NED 1/3 arc-second n68w147 1 x 1 degree GridFloat 2017 USGS NED 2 arc-second n61w156 1 x 1 degree IMG 2018 USGS NED 1 arc-second n68w145 1 x 1 degree IMG 2018 USGS NED 1 arc-second n58w133 1 x 1 degree ArcGrid 2018 USGS NED 1 arc-second n59w161 1 x 1 degree ArcGrid 2018 USGS NED 1/3 arc-second n64w146 1 x 1 degree GridFloat 2018 USGS NED 1/3 arc-second n64w146 1 x 1 degree IMG 2018 USGS 1:250000-scale Quadrangle for Fish Lake, UT 1896 USGS 1:250000-scale Quadrangle for Henry Mountains, UT 1892 USGS 1:250000-scale Quadrangle for Henry Mountains, UT 1892 USGS 1:250000-scale Quadrangle for Manti, UT 1885 USGS NED 1/3 arc-second Contours for Demarcation Point E, Alaska 20180910 1 X 1 degree FileGDB 10.1 USGS NED 1/3 arc-second Contours for Flaxman Island E, Alaska 20180910 1 X 1 degree FileGDB 10.1 USGS NED 1/3 arc-second Contours for Ketchikan E OE E, Alaska 20180910 1 X 1 degree FileGDB 10.1 USGS NED 1/3 arc-second Contours for Mount Michelson C, Alaska 20180910 1 X 1 degree Shapefile USGS NED 1/3 arc-second Contours for Prince Rupert E, Alaska 20180910 1 X 1 degree FileGDB 10.1 USGS 1:250000-scale Quadrangle for Fish Lake, UT 1896 USGS 1:250000-scale Quadrangle for Henry Mountains, UT 1892 USGS 1:250000-scale Quadrangle for Henry Mountains, UT 1892 USGS 1:250000-scale Quadrangle for Manti, UT 1885 USGS NED 1/3 arc-second Contours for Demarcation Point E, Alaska 20180910 1 X 1 degree FileGDB 10.1 USGS NED 1/3 arc-second Contours for Flaxman Island E, Alaska 20180910 1 X 1 degree FileGDB 10.1 USGS NED 1/3 arc-second Contours for Ketchikan E OE E, Alaska 20180910 1 X 1 degree FileGDB 10.1 USGS NED 1/3 arc-second Contours for Mount Michelson C, Alaska 20180910 1 X 1 degree Shapefile USGS NED 1/3 arc-second Contours for Prince Rupert E, Alaska 20180910 1 X 1 degree FileGDB 10.1 USGS NED 1/3 arc-second n68w147 1 x 1 degree GridFloat 2017 USGS NED 1/3 arc-second n64w146 1 x 1 degree IMG 2018 USGS NED 1/3 arc-second n64w146 1 x 1 degree GridFloat 2018 USGS NED 1 arc-second n58w133 1 x 1 degree ArcGrid 2018 USGS NED 1 arc-second n31w089 1 x 1 degree ArcGrid 2018 USGS NED 1 arc-second n31w086 1 x 1 degree ArcGrid 2017 USGS NED 1 arc-second n68w145 1 x 1 degree IMG 2018 USGS NED 1 arc-second n59w161 1 x 1 degree ArcGrid 2018 USGS NED 1 arc-second n57w133 1 x 1 degree ArcGrid 2018 USGS NED 2 arc-second n63w163 1 x 1 degree IMG 2017 USGS NED 2 arc-second n61w156 1 x 1 degree IMG 2018