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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 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.
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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.
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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.
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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.
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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.
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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.
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Lidar (Light detection and ranging) discrete-return point cloud data are available in the American Society for Photogrammetry and Remote Sensing (ASPRS) LAS format. The LAS format is a standardized binary format for storing 3-dimensional point cloud data and point attributes along with header information and variable length records specific to the data. Millions of data points are stored as a 3-dimensional data cloud as a series of x (longitude), y (latitude) and z (elevation) points. A few older projects in this collection are in ASCII format. Please refer to http://www.asprs.org/Committee-General/LASer-LAS-File-Format-Exchange-Activities.html for additional information.
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Lidar (Light detection and ranging) discrete-return point cloud data are available in the American Society for Photogrammetry and Remote Sensing (ASPRS) LAS format. The LAS format is a standardized binary format for storing 3-dimensional point cloud data and point attributes along with header information and variable length records specific to the data. Millions of data points are stored as a 3-dimensional data cloud as a series of x (longitude), y (latitude) and z (elevation) points. A few older projects in this collection are in ASCII format. Please refer to http://www.asprs.org/Committee-General/LASer-LAS-File-Format-Exchange-Activities.html for additional information.
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Lidar (Light detection and ranging) discrete-return point cloud data are available in the American Society for Photogrammetry and Remote Sensing (ASPRS) LAS format. The LAS format is a standardized binary format for storing 3-dimensional point cloud data and point attributes along with header information and variable length records specific to the data. Millions of data points are stored as a 3-dimensional data cloud as a series of x (longitude), y (latitude) and z (elevation) points. A few older projects in this collection are in ASCII format. Please refer to http://www.asprs.org/Committee-General/LASer-LAS-File-Format-Exchange-Activities.html for additional information.
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Lidar (Light detection and ranging) discrete-return point cloud data are available in the American Society for Photogrammetry and Remote Sensing (ASPRS) LAS format. The LAS format is a standardized binary format for storing 3-dimensional point cloud data and point attributes along with header information and variable length records specific to the data. Millions of data points are stored as a 3-dimensional data cloud as a series of x (longitude), y (latitude) and z (elevation) points. A few older projects in this collection are in ASCII format. Please refer to http://www.asprs.org/Committee-General/LASer-LAS-File-Format-Exchange-Activities.html for additional information.
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Lidar (Light detection and ranging) discrete-return point cloud data are available in the American Society for Photogrammetry and Remote Sensing (ASPRS) LAS format. The LAS format is a standardized binary format for storing 3-dimensional point cloud data and point attributes along with header information and variable length records specific to the data. Millions of data points are stored as a 3-dimensional data cloud as a series of x (longitude), y (latitude) and z (elevation) points. A few older projects in this collection are in ASCII format. Please refer to http://www.asprs.org/Committee-General/LASer-LAS-File-Format-Exchange-Activities.html for additional information.
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Lidar (Light detection and ranging) discrete-return point cloud data are available in the American Society for Photogrammetry and Remote Sensing (ASPRS) LAS format. The LAS format is a standardized binary format for storing 3-dimensional point cloud data and point attributes along with header information and variable length records specific to the data. Millions of data points are stored as a 3-dimensional data cloud as a series of x (longitude), y (latitude) and z (elevation) points. A few older projects in this collection are in ASCII format. Please refer to http://www.asprs.org/Committee-General/LASer-LAS-File-Format-Exchange-Activities.html for additional information.
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Lidar (Light detection and ranging) discrete-return point cloud data are available in the American Society for Photogrammetry and Remote Sensing (ASPRS) LAS format. The LAS format is a standardized binary format for storing 3-dimensional point cloud data and point attributes along with header information and variable length records specific to the data. Millions of data points are stored as a 3-dimensional data cloud as a series of x (longitude), y (latitude) and z (elevation) points. A few older projects in this collection are in ASCII format. Please refer to http://www.asprs.org/Committee-General/LASer-LAS-File-Format-Exchange-Activities.html for additional information.
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Lidar (Light detection and ranging) discrete-return point cloud data are available in the American Society for Photogrammetry and Remote Sensing (ASPRS) LAS format. The LAS format is a standardized binary format for storing 3-dimensional point cloud data and point attributes along with header information and variable length records specific to the data. Millions of data points are stored as a 3-dimensional data cloud as a series of x (longitude), y (latitude) and z (elevation) points. A few older projects in this collection are in ASCII format. Please refer to http://www.asprs.org/Committee-General/LASer-LAS-File-Format-Exchange-Activities.html for additional information.
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Lidar (Light detection and ranging) discrete-return point cloud data are available in the American Society for Photogrammetry and Remote Sensing (ASPRS) LAS format. The LAS format is a standardized binary format for storing 3-dimensional point cloud data and point attributes along with header information and variable length records specific to the data. Millions of data points are stored as a 3-dimensional data cloud as a series of x (longitude), y (latitude) and z (elevation) points. A few older projects in this collection are in ASCII format. Please refer to http://www.asprs.org/Committee-General/LASer-LAS-File-Format-Exchange-Activities.html for additional information.
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Lidar (Light detection and ranging) discrete-return point cloud data are available in the American Society for Photogrammetry and Remote Sensing (ASPRS) LAS format. The LAS format is a standardized binary format for storing 3-dimensional point cloud data and point attributes along with header information and variable length records specific to the data. Millions of data points are stored as a 3-dimensional data cloud as a series of x (longitude), y (latitude) and z (elevation) points. A few older projects in this collection are in ASCII format. Please refer to http://www.asprs.org/Committee-General/LASer-LAS-File-Format-Exchange-Activities.html for additional information.
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Lidar (Light detection and ranging) discrete-return point cloud data are available in the American Society for Photogrammetry and Remote Sensing (ASPRS) LAS format. The LAS format is a standardized binary format for storing 3-dimensional point cloud data and point attributes along with header information and variable length records specific to the data. Millions of data points are stored as a 3-dimensional data cloud as a series of x (longitude), y (latitude) and z (elevation) points. A few older projects in this collection are in ASCII format. Please refer to http://www.asprs.org/Committee-General/LASer-LAS-File-Format-Exchange-Activities.html for additional information.
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Lidar (Light detection and ranging) discrete-return point cloud data are available in the American Society for Photogrammetry and Remote Sensing (ASPRS) LAS format. The LAS format is a standardized binary format for storing 3-dimensional point cloud data and point attributes along with header information and variable length records specific to the data. Millions of data points are stored as a 3-dimensional data cloud as a series of x (longitude), y (latitude) and z (elevation) points. A few older projects in this collection are in ASCII format. Please refer to http://www.asprs.org/Committee-General/LASer-LAS-File-Format-Exchange-Activities.html for additional information.
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Lidar (Light detection and ranging) discrete-return point cloud data are available in the American Society for Photogrammetry and Remote Sensing (ASPRS) LAS format. The LAS format is a standardized binary format for storing 3-dimensional point cloud data and point attributes along with header information and variable length records specific to the data. Millions of data points are stored as a 3-dimensional data cloud as a series of x (longitude), y (latitude) and z (elevation) points. A few older projects in this collection are in ASCII format. Please refer to http://www.asprs.org/Committee-General/LASer-LAS-File-Format-Exchange-Activities.html for additional information.


map background search result map search result map USGS NED 1 arc-second n35w097 1 x 1 degree IMG 2017 USGS NED Alaska 5 Meter AK Summer-IFSAR-D16-L1-C43 2016 DTM n6915w14700P TIFF 2017 USGS NED Alaska 5 Meter AK Summer-IFSAR-D16-L1-C44 2016 DTM n6945w14545P TIFF 2017 USGS NED Alaska 5 Meter AK Summer-IFSAR-D16-L1-C69 2016 DTM n6800w14700P TIFF 2017 USGS NED Alaska 5 Meter AK Summer-IFSAR-D16-L1-C69 2016 DTM n6815w14630P TIFF 2017 USGS NED Alaska 5 Meter AK Summer-IFSAR-D16-L1-C69 2016 DTM n6845w14645P TIFF 2017 USGS NED Alaska 5 Meter AK Summer-IFSAR-D16-L1-C94 2016 DTM n6730w14645P TIFF 2017 USGS Lidar Point Cloud UT WashingtonCo 2016 12STG6842 LAS 2017 USGS Lidar Point Cloud UT WashingtonCo 2016 12STG6901 LAS 2017 USGS Lidar Point Cloud UT WashingtonCo 2016 12STG6903 LAS 2017 USGS Lidar Point Cloud UT WashingtonCo 2016 12STG6928 LAS 2017 USGS Lidar Point Cloud UT WashingtonCo 2016 12STG6942 LAS 2017 USGS Lidar Point Cloud UT WashingtonCo 2016 12STG7003 LAS 2017 USGS Lidar Point Cloud UT WashingtonCo 2016 12STG7004 LAS 2017 USGS Lidar Point Cloud UT WashingtonCo 2016 12STG7104 LAS 2017 USGS Lidar Point Cloud UT WashingtonCo 2016 12STG7109 LAS 2017 USGS Lidar Point Cloud UT WashingtonCo 2016 12STG7110 LAS 2017 USGS Lidar Point Cloud UT WashingtonCo 2016 12STG7201 LAS 2017 USGS Lidar Point Cloud UT WashingtonCo 2016 12STG7303 LAS 2017 USGS Lidar Point Cloud UT WashingtonCo 2016 12STG7403 LAS 2017 USGS Lidar Point Cloud UT WashingtonCo 2016 12STG7403 LAS 2017 USGS Lidar Point Cloud UT WashingtonCo 2016 12STG7201 LAS 2017 USGS Lidar Point Cloud UT WashingtonCo 2016 12STG7303 LAS 2017 USGS Lidar Point Cloud UT WashingtonCo 2016 12STG7104 LAS 2017 USGS Lidar Point Cloud UT WashingtonCo 2016 12STG6901 LAS 2017 USGS Lidar Point Cloud UT WashingtonCo 2016 12STG7003 LAS 2017 USGS Lidar Point Cloud UT WashingtonCo 2016 12STG7004 LAS 2017 USGS Lidar Point Cloud UT WashingtonCo 2016 12STG6903 LAS 2017 USGS Lidar Point Cloud UT WashingtonCo 2016 12STG7109 LAS 2017 USGS Lidar Point Cloud UT WashingtonCo 2016 12STG7110 LAS 2017 USGS Lidar Point Cloud UT WashingtonCo 2016 12STG6928 LAS 2017 USGS Lidar Point Cloud UT WashingtonCo 2016 12STG6942 LAS 2017 USGS Lidar Point Cloud UT WashingtonCo 2016 12STG6842 LAS 2017 USGS NED Alaska 5 Meter AK Summer-IFSAR-D16-L1-C69 2016 DTM n6800w14700P TIFF 2017 USGS NED Alaska 5 Meter AK Summer-IFSAR-D16-L1-C94 2016 DTM n6730w14645P TIFF 2017 USGS NED Alaska 5 Meter AK Summer-IFSAR-D16-L1-C43 2016 DTM n6915w14700P TIFF 2017 USGS NED Alaska 5 Meter AK Summer-IFSAR-D16-L1-C69 2016 DTM n6845w14645P TIFF 2017 USGS NED Alaska 5 Meter AK Summer-IFSAR-D16-L1-C69 2016 DTM n6815w14630P TIFF 2017 USGS NED Alaska 5 Meter AK Summer-IFSAR-D16-L1-C44 2016 DTM n6945w14545P TIFF 2017 USGS NED 1 arc-second n35w097 1 x 1 degree IMG 2017