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This is a tile of the standard one-meter resolution digital elevation model (DEM) produced through the 3D Elevation Program (3DEP) . The elevations in this DEM represent the topographic bare-earth surface. USGS standard one-meter DEMs are produced exclusively from high resolution light detection and ranging (lidar) source data of one-meter or higher resolution. One-meter DEM surfaces are seamless within collection projects, but, not necessarily seamless across projects. The spatial reference used for tiles of the one-meter DEM within the conterminous United States (CONUS) is Universal Transverse Mercator (UTM) in units of meters, and in conformance with the North American Datum of 1983 (NAD83). All bare earth elevation...
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This is a tile of the standard one-meter resolution digital elevation model (DEM) produced through the 3D Elevation Program (3DEP) . The elevations in this DEM represent the topographic bare-earth surface. USGS standard one-meter DEMs are produced exclusively from high resolution light detection and ranging (lidar) source data of one-meter or higher resolution. One-meter DEM surfaces are seamless within collection projects, but, not necessarily seamless across projects. The spatial reference used for tiles of the one-meter DEM within the conterminous United States (CONUS) is Universal Transverse Mercator (UTM) in units of meters, and in conformance with the North American Datum of 1983 (NAD83). All bare earth elevation...
thumbnail
This is a tile of the standard one-meter resolution digital elevation model (DEM) produced through the 3D Elevation Program (3DEP) . The elevations in this DEM represent the topographic bare-earth surface. USGS standard one-meter DEMs are produced exclusively from high resolution light detection and ranging (lidar) source data of one-meter or higher resolution. One-meter DEM surfaces are seamless within collection projects, but, not necessarily seamless across projects. The spatial reference used for tiles of the one-meter DEM within the conterminous United States (CONUS) is Universal Transverse Mercator (UTM) in units of meters, and in conformance with the North American Datum of 1983 (NAD83). All bare earth elevation...
thumbnail
This is a tile of the standard one-meter resolution digital elevation model (DEM) produced through the 3D Elevation Program (3DEP) . The elevations in this DEM represent the topographic bare-earth surface. USGS standard one-meter DEMs are produced exclusively from high resolution light detection and ranging (lidar) source data of one-meter or higher resolution. One-meter DEM surfaces are seamless within collection projects, but, not necessarily seamless across projects. The spatial reference used for tiles of the one-meter DEM within the conterminous United States (CONUS) is Universal Transverse Mercator (UTM) in units of meters, and in conformance with the North American Datum of 1983 (NAD83). All bare earth elevation...
thumbnail
This is a tile of the standard one-meter resolution digital elevation model (DEM) produced through the 3D Elevation Program (3DEP) . The elevations in this DEM represent the topographic bare-earth surface. USGS standard one-meter DEMs are produced exclusively from high resolution light detection and ranging (lidar) source data of one-meter or higher resolution. One-meter DEM surfaces are seamless within collection projects, but, not necessarily seamless across projects. The spatial reference used for tiles of the one-meter DEM within the conterminous United States (CONUS) is Universal Transverse Mercator (UTM) in units of meters, and in conformance with the North American Datum of 1983 (NAD83). All bare earth elevation...
thumbnail
This is a tile of the standard one-meter resolution digital elevation model (DEM) produced through the 3D Elevation Program (3DEP) . The elevations in this DEM represent the topographic bare-earth surface. USGS standard one-meter DEMs are produced exclusively from high resolution light detection and ranging (lidar) source data of one-meter or higher resolution. One-meter DEM surfaces are seamless within collection projects, but, not necessarily seamless across projects. The spatial reference used for tiles of the one-meter DEM within the conterminous United States (CONUS) is Universal Transverse Mercator (UTM) in units of meters, and in conformance with the North American Datum of 1983 (NAD83). All bare earth elevation...
thumbnail
This is a tile of the standard one-meter resolution digital elevation model (DEM) produced through the 3D Elevation Program (3DEP) . The elevations in this DEM represent the topographic bare-earth surface. USGS standard one-meter DEMs are produced exclusively from high resolution light detection and ranging (lidar) source data of one-meter or higher resolution. One-meter DEM surfaces are seamless within collection projects, but, not necessarily seamless across projects. The spatial reference used for tiles of the one-meter DEM within the conterminous United States (CONUS) is Universal Transverse Mercator (UTM) in units of meters, and in conformance with the North American Datum of 1983 (NAD83). All bare earth elevation...
thumbnail
This is a tile of the standard one-meter resolution digital elevation model (DEM) produced through the 3D Elevation Program (3DEP) . The elevations in this DEM represent the topographic bare-earth surface. USGS standard one-meter DEMs are produced exclusively from high resolution light detection and ranging (lidar) source data of one-meter or higher resolution. One-meter DEM surfaces are seamless within collection projects, but, not necessarily seamless across projects. The spatial reference used for tiles of the one-meter DEM within the conterminous United States (CONUS) is Universal Transverse Mercator (UTM) in units of meters, and in conformance with the North American Datum of 1983 (NAD83). All bare earth elevation...
thumbnail
This is a tile of the standard one-meter resolution digital elevation model (DEM) produced through the 3D Elevation Program (3DEP) . The elevations in this DEM represent the topographic bare-earth surface. USGS standard one-meter DEMs are produced exclusively from high resolution light detection and ranging (lidar) source data of one-meter or higher resolution. One-meter DEM surfaces are seamless within collection projects, but, not necessarily seamless across projects. The spatial reference used for tiles of the one-meter DEM within the conterminous United States (CONUS) is Universal Transverse Mercator (UTM) in units of meters, and in conformance with the North American Datum of 1983 (NAD83). All bare earth elevation...
thumbnail
This is a tile of the standard one-meter resolution digital elevation model (DEM) produced through the 3D Elevation Program (3DEP) . The elevations in this DEM represent the topographic bare-earth surface. USGS standard one-meter DEMs are produced exclusively from high resolution light detection and ranging (lidar) source data of one-meter or higher resolution. One-meter DEM surfaces are seamless within collection projects, but, not necessarily seamless across projects. The spatial reference used for tiles of the one-meter DEM within the conterminous United States (CONUS) is Universal Transverse Mercator (UTM) in units of meters, and in conformance with the North American Datum of 1983 (NAD83). All bare earth elevation...
thumbnail
This is a tile of the standard one-meter resolution digital elevation model (DEM) produced through the 3D Elevation Program (3DEP) . The elevations in this DEM represent the topographic bare-earth surface. USGS standard one-meter DEMs are produced exclusively from high resolution light detection and ranging (lidar) source data of one-meter or higher resolution. One-meter DEM surfaces are seamless within collection projects, but, not necessarily seamless across projects. The spatial reference used for tiles of the one-meter DEM within the conterminous United States (CONUS) is Universal Transverse Mercator (UTM) in units of meters, and in conformance with the North American Datum of 1983 (NAD83). All bare earth elevation...
thumbnail
This is a tile of the standard one-meter resolution digital elevation model (DEM) produced through the 3D Elevation Program (3DEP) . The elevations in this DEM represent the topographic bare-earth surface. USGS standard one-meter DEMs are produced exclusively from high resolution light detection and ranging (lidar) source data of one-meter or higher resolution. One-meter DEM surfaces are seamless within collection projects, but, not necessarily seamless across projects. The spatial reference used for tiles of the one-meter DEM within the conterminous United States (CONUS) is Universal Transverse Mercator (UTM) in units of meters, and in conformance with the North American Datum of 1983 (NAD83). All bare earth elevation...
thumbnail
This is a tile of the standard one-meter resolution digital elevation model (DEM) produced through the 3D Elevation Program (3DEP) . The elevations in this DEM represent the topographic bare-earth surface. USGS standard one-meter DEMs are produced exclusively from high resolution light detection and ranging (lidar) source data of one-meter or higher resolution. One-meter DEM surfaces are seamless within collection projects, but, not necessarily seamless across projects. The spatial reference used for tiles of the one-meter DEM within the conterminous United States (CONUS) is Universal Transverse Mercator (UTM) in units of meters, and in conformance with the North American Datum of 1983 (NAD83). All bare earth elevation...
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This is the Original Product Resolution (OPR) Digital Elevation Model (DEM) as provided to the USGS. This DEM is delivered in the original resolution, with the original spatial reference. These data may be used as the source of updates to the seamless layers of the 3D Elevation Program, which serves as the elevation layer of the National Map. These data can be used by scientists and resource managers for global change research, hydrologic modeling, resource monitoring, mapping and visualization, and many other applications.
thumbnail
This is the Original Product Resolution (OPR) Digital Elevation Model (DEM) as provided to the USGS. This DEM is delivered in the original resolution, with the original spatial reference. These data may be used as the source of updates to the seamless layers of the 3D Elevation Program, which serves as the elevation layer of the National Map. These data can be used by scientists and resource managers for global change research, hydrologic modeling, resource monitoring, mapping and visualization, and many other applications.
thumbnail
This is the Original Product Resolution (OPR) Digital Elevation Model (DEM) as provided to the USGS. This DEM is delivered in the original resolution, with the original spatial reference. These data may be used as the source of updates to the seamless layers of the 3D Elevation Program, which serves as the elevation layer of the National Map. These data can be used by scientists and resource managers for global change research, hydrologic modeling, resource monitoring, mapping and visualization, and many other applications.
thumbnail
This is the Original Product Resolution (OPR) Digital Elevation Model (DEM) as provided to the USGS. This DEM is delivered in the original resolution, with the original spatial reference. These data may be used as the source of updates to the seamless layers of the 3D Elevation Program, which serves as the elevation layer of the National Map. These data can be used by scientists and resource managers for global change research, hydrologic modeling, resource monitoring, mapping and visualization, and many other applications.
thumbnail
This is the Original Product Resolution (OPR) Digital Elevation Model (DEM) as provided to the USGS. This DEM is delivered in the original resolution, with the original spatial reference. These data may be used as the source of updates to the seamless layers of the 3D Elevation Program, which serves as the elevation layer of the National Map. These data can be used by scientists and resource managers for global change research, hydrologic modeling, resource monitoring, mapping and visualization, and many other applications.
thumbnail
This is the Original Product Resolution (OPR) Digital Elevation Model (DEM) as provided to the USGS. This DEM is delivered in the original resolution, with the original spatial reference. These data may be used as the source of updates to the seamless layers of the 3D Elevation Program, which serves as the elevation layer of the National Map. These data can be used by scientists and resource managers for global change research, hydrologic modeling, resource monitoring, mapping and visualization, and many other applications.
thumbnail
This is the Original Product Resolution (OPR) Digital Elevation Model (DEM) as provided to the USGS. This DEM is delivered in the original resolution, with the original spatial reference. These data may be used as the source of updates to the seamless layers of the 3D Elevation Program, which serves as the elevation layer of the National Map. These data can be used by scientists and resource managers for global change research, hydrologic modeling, resource monitoring, mapping and visualization, and many other applications.


map background search result map search result map USGS 1 Meter 4 x86y223 HI_Hawaii_Island_Lidar_NOAA_2017_B17 USGS 1 Meter 4 x85y221 HI_Hawaii_Island_Lidar_NOAA_2017_B17 USGS 1 Meter 4 x84y222 HI_Hawaii_Island_Lidar_NOAA_2017_B17 USGS 1 Meter 4 x81y220 HI_Hawaii_Island_Lidar_NOAA_2017_B17 USGS 1 Meter 5 x28y220 HI_Hawaii_Island_Lidar_NOAA_2017_B17 USGS 1 Meter 5 x27y216 HI_Hawaii_Island_Lidar_NOAA_2017_B17 USGS 1 Meter 5 x26y220 HI_Hawaii_Island_Lidar_NOAA_2017_B17 USGS 1 Meter 5 x26y214 HI_Hawaii_Island_Lidar_NOAA_2017_B17 USGS 1 Meter 5 x25y222 HI_Hawaii_Island_Lidar_NOAA_2017_B17 USGS 1 Meter 5 x24y213 HI_Hawaii_Island_Lidar_NOAA_2017_B17 USGS 1 Meter 5 x23y214 HI_Hawaii_Island_Lidar_NOAA_2017_B17 USGS 1 Meter 5 x22y213 HI_Hawaii_Island_Lidar_NOAA_2017_B17 USGS 1 Meter 5 x21y223 HI_Hawaii_Island_Lidar_NOAA_2017_B17 USGS Original Product Resolution SD_Missouri_River_LiDAR_Woolpert_2016_D16 14TNN700500 USGS Original Product Resolution SD_Missouri_River_LiDAR_Woolpert_2016_D16 14TNN700480 USGS Original Product Resolution SD_Missouri_River_LiDAR_Woolpert_2016_D16 14TNN690620 USGS Original Product Resolution SD_Missouri_River_LiDAR_Woolpert_2016_D16 14TNN690490 USGS Original Product Resolution SD_Missouri_River_LiDAR_Woolpert_2016_D16 14TNN690450 USGS Original Product Resolution SD_Missouri_River_LiDAR_Woolpert_2016_D16 14TNN680840 USGS Original Product Resolution SD_Missouri_River_LiDAR_Woolpert_2016_D16 14TNN680740 USGS Original Product Resolution SD_Missouri_River_LiDAR_Woolpert_2016_D16 14TNN680840 USGS Original Product Resolution SD_Missouri_River_LiDAR_Woolpert_2016_D16 14TNN690450 USGS Original Product Resolution SD_Missouri_River_LiDAR_Woolpert_2016_D16 14TNN690490 USGS Original Product Resolution SD_Missouri_River_LiDAR_Woolpert_2016_D16 14TNN700480 USGS Original Product Resolution SD_Missouri_River_LiDAR_Woolpert_2016_D16 14TNN700500 USGS Original Product Resolution SD_Missouri_River_LiDAR_Woolpert_2016_D16 14TNN690620 USGS Original Product Resolution SD_Missouri_River_LiDAR_Woolpert_2016_D16 14TNN680740 USGS 1 Meter 5 x26y214 HI_Hawaii_Island_Lidar_NOAA_2017_B17 USGS 1 Meter 5 x27y216 HI_Hawaii_Island_Lidar_NOAA_2017_B17 USGS 1 Meter 5 x24y213 HI_Hawaii_Island_Lidar_NOAA_2017_B17 USGS 1 Meter 5 x28y220 HI_Hawaii_Island_Lidar_NOAA_2017_B17 USGS 1 Meter 5 x23y214 HI_Hawaii_Island_Lidar_NOAA_2017_B17 USGS 1 Meter 5 x22y213 HI_Hawaii_Island_Lidar_NOAA_2017_B17 USGS 1 Meter 5 x26y220 HI_Hawaii_Island_Lidar_NOAA_2017_B17 USGS 1 Meter 5 x25y222 HI_Hawaii_Island_Lidar_NOAA_2017_B17 USGS 1 Meter 5 x21y223 HI_Hawaii_Island_Lidar_NOAA_2017_B17 USGS 1 Meter 4 x81y220 HI_Hawaii_Island_Lidar_NOAA_2017_B17 USGS 1 Meter 4 x84y222 HI_Hawaii_Island_Lidar_NOAA_2017_B17 USGS 1 Meter 4 x85y221 HI_Hawaii_Island_Lidar_NOAA_2017_B17 USGS 1 Meter 4 x86y223 HI_Hawaii_Island_Lidar_NOAA_2017_B17