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Hillshade of lidar-derived, bare earth digital elevation model, with 235-degree azimuth and 20-degree sun angle, 0.25m resolution, depicting earthquake effects following the August 24, 2014 South Napa Earthquake.
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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. All elevation units have been converted to meters. These data may be used as the source of updates to the National Elevation Dataset (NED), 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. All elevation units have been converted to meters. These data may be used as the source of updates to the National Elevation Dataset (NED), 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 dataset represents 25 parallel longitudinal profiles that were extracted from terrestrial lidar point clouds taken during six survey periods. The six lidar surveys were conducted between 7 October 2010 and 8 October 2013. Over that time a colluvial hollow eroded into a fluvial channel. The longitudinal profiles show the topography of the colluvial hollow for each survey period. The width of the original colluvial hollow was approximately 1.25 m, and a longitudinal profile was extracted every 5 cm for the entire length of the hollow, resulting in 25 parallel longitudinal profiles. These data can be used to observe the transition of the colluvial hollow to a fluvial channel and furthermore they show the development...
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This tile of the National Elevation Dataset (NED) is 1/9 arc-second resolution. The National Elevation Dataset (NED) serves 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 NED data for global change research, hydrologic modeling, resource monitoring, mapping and visualization, and many other applications. The NED 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. The NED...
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This tile of the National Elevation Dataset (NED) is 1/9 arc-second resolution. The National Elevation Dataset (NED) serves 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 NED data for global change research, hydrologic modeling, resource monitoring, mapping and visualization, and many other applications. The NED 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. The NED...
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This tile of the National Elevation Dataset (NED) is 1/9 arc-second resolution. The National Elevation Dataset (NED) serves 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 NED data for global change research, hydrologic modeling, resource monitoring, mapping and visualization, and many other applications. The NED 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. The NED...
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This tile of the National Elevation Dataset (NED) is 1/9 arc-second resolution. The National Elevation Dataset (NED) serves 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 NED data for global change research, hydrologic modeling, resource monitoring, mapping and visualization, and many other applications. The NED 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. The NED...
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This tile of the National Elevation Dataset (NED) is 1/9 arc-second resolution. The National Elevation Dataset (NED) serves 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 NED data for global change research, hydrologic modeling, resource monitoring, mapping and visualization, and many other applications. The NED 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. The NED...
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This tile of the National Elevation Dataset (NED) is 1/9 arc-second resolution. The National Elevation Dataset (NED) serves 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 NED data for global change research, hydrologic modeling, resource monitoring, mapping and visualization, and many other applications. The NED 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. The NED...
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This tile of the National Elevation Dataset (NED) is 1/9 arc-second resolution. The National Elevation Dataset (NED) serves 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 NED data for global change research, hydrologic modeling, resource monitoring, mapping and visualization, and many other applications. The NED 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. The NED...
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This tile of the National Elevation Dataset (NED) is 1/9 arc-second resolution. The National Elevation Dataset (NED) serves 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 NED data for global change research, hydrologic modeling, resource monitoring, mapping and visualization, and many other applications. The NED 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. The NED...
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This tile of the National Elevation Dataset (NED) is 1/9 arc-second resolution. The National Elevation Dataset (NED) serves 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 NED data for global change research, hydrologic modeling, resource monitoring, mapping and visualization, and many other applications. The NED 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. The NED...
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This tile of the National Elevation Dataset (NED) is 1/9 arc-second resolution. The National Elevation Dataset (NED) serves 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 NED data for global change research, hydrologic modeling, resource monitoring, mapping and visualization, and many other applications. The NED 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. The NED...
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This tile of the National Elevation Dataset (NED) is 1/9 arc-second resolution. The National Elevation Dataset (NED) serves 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 NED data for global change research, hydrologic modeling, resource monitoring, mapping and visualization, and many other applications. The NED 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. The NED...
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This tile of the National Elevation Dataset (NED) is 1/9 arc-second resolution. The National Elevation Dataset (NED) serves 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 NED data for global change research, hydrologic modeling, resource monitoring, mapping and visualization, and many other applications. The NED 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. The NED...
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This tile of the National Elevation Dataset (NED) is 1/9 arc-second resolution. The National Elevation Dataset (NED) serves 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 NED data for global change research, hydrologic modeling, resource monitoring, mapping and visualization, and many other applications. The NED 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. The NED...
thumbnail
This tile of the National Elevation Dataset (NED) is 1/9 arc-second resolution. The National Elevation Dataset (NED) serves 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 NED data for global change research, hydrologic modeling, resource monitoring, mapping and visualization, and many other applications. The NED 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. The NED...
thumbnail
This tile of the National Elevation Dataset (NED) is 1/9 arc-second resolution. The National Elevation Dataset (NED) serves 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 NED data for global change research, hydrologic modeling, resource monitoring, mapping and visualization, and many other applications. The NED 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. The NED...
thumbnail
This tile of the National Elevation Dataset (NED) is 1/9 arc-second resolution. The National Elevation Dataset (NED) serves 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 NED data for global change research, hydrologic modeling, resource monitoring, mapping and visualization, and many other applications. The NED 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. The NED...


map background search result map search result map USGS NED Original Product Resolution AK IFSAR-D6-L4-C37 2013 ArcGrid 2015 USGS NED Original Product Resolution AK IFSAR-LowerSE-L1-C350 2014 QA Report ArcGrid 2016 USGS NED ned19_n48x50_w098x25_nd_redriver_e_2008 1/9 arc-second 2011 15 x 15 minute IMG USGS NED ned19_n48x50_w116x50_wa_id_mt_columbiariver_2010 1/9 arc-second 2011 15 x 15 minute IMG USGS NED ned19_n48x75_w095x25_mn_redriver_iextra_2009 1/9 arc-second 2012 15 x 15 minute IMG USGS NED ned19_n48x75_w098x25_nd_redriver_e_2008 1/9 arc-second 2011 15 x 15 minute IMG USGS NED ned19_n48x75_w117x50_wa_id_mt_columbiariver_2010 1/9 arc-second 2011 15 x 15 minute IMG USGS NED ned19_n49x00_w097x50_mn_nd_redriver_abc_2008 1/9 arc-second 2009 15 x 15 minute IMG USGS NED ned19_n49x00_w098x00_nd_redriver_e_2008 1/9 arc-second 2011 15 x 15 minute IMG USGS NED ned19_n49x00_w116x75_wa_id_mt_columbiariver_2010 1/9 arc-second 2011 15 x 15 minute IMG USGS NED ned19_n49x00_w118x25_wa_columbiariver_2010 1/9 arc-second 2011 15 x 15 minute IMG USGS NED ned19_n49x25_w094x75_mn_redriver_iextra_2009 1/9 arc-second 2012 15 x 15 minute IMG USGS NED ned19_n49x25_w096x50_mn_redriver_iextra_2009 1/9 arc-second 2012 15 x 15 minute IMG USGS NED ned19_n49x25_w097x50_mn_nd_redriver_abc_2008 1/9 arc-second 2009 15 x 15 minute IMG USGS NED ned19_n49x25_w098x50_nd_redriver_e_2008 1/9 arc-second 2011 15 x 15 minute IMG USGS NED ned19_n49x50_w095x00_mn_redriver_iextra_2009 1/9 arc-second 2012 15 x 15 minute IMG USGS NED ned19_n61x25_w150x50_ak_matanuska_susitna_2011 1/9 arc-second 2013 15 x 15 minute IMG USGS NED ned19_n61x75_w148x25_ak_matanuska_susitna_lot2_2011 1/9 arc-second 2013 15 x 15 minute IMG Hillshade raster (235-degree azimuth, 20-degree sun angle) derived from lidar data collected after the August 24, 2014 South Napa earthquake Fourmile Canyon Wildfire Longitudinal Profile Data Fourmile Canyon Wildfire Longitudinal Profile Data Hillshade raster (235-degree azimuth, 20-degree sun angle) derived from lidar data collected after the August 24, 2014 South Napa earthquake USGS NED ned19_n48x50_w098x25_nd_redriver_e_2008 1/9 arc-second 2011 15 x 15 minute IMG USGS NED ned19_n48x50_w116x50_wa_id_mt_columbiariver_2010 1/9 arc-second 2011 15 x 15 minute IMG USGS NED ned19_n48x75_w095x25_mn_redriver_iextra_2009 1/9 arc-second 2012 15 x 15 minute IMG USGS NED ned19_n48x75_w098x25_nd_redriver_e_2008 1/9 arc-second 2011 15 x 15 minute IMG USGS NED ned19_n48x75_w117x50_wa_id_mt_columbiariver_2010 1/9 arc-second 2011 15 x 15 minute IMG USGS NED ned19_n49x00_w097x50_mn_nd_redriver_abc_2008 1/9 arc-second 2009 15 x 15 minute IMG USGS NED ned19_n49x00_w098x00_nd_redriver_e_2008 1/9 arc-second 2011 15 x 15 minute IMG USGS NED ned19_n49x00_w116x75_wa_id_mt_columbiariver_2010 1/9 arc-second 2011 15 x 15 minute IMG USGS NED ned19_n49x00_w118x25_wa_columbiariver_2010 1/9 arc-second 2011 15 x 15 minute IMG USGS NED ned19_n49x25_w094x75_mn_redriver_iextra_2009 1/9 arc-second 2012 15 x 15 minute IMG USGS NED ned19_n49x25_w096x50_mn_redriver_iextra_2009 1/9 arc-second 2012 15 x 15 minute IMG USGS NED ned19_n49x25_w097x50_mn_nd_redriver_abc_2008 1/9 arc-second 2009 15 x 15 minute IMG USGS NED ned19_n49x25_w098x50_nd_redriver_e_2008 1/9 arc-second 2011 15 x 15 minute IMG USGS NED ned19_n49x50_w095x00_mn_redriver_iextra_2009 1/9 arc-second 2012 15 x 15 minute IMG USGS NED ned19_n61x25_w150x50_ak_matanuska_susitna_2011 1/9 arc-second 2013 15 x 15 minute IMG USGS NED ned19_n61x75_w148x25_ak_matanuska_susitna_lot2_2011 1/9 arc-second 2013 15 x 15 minute IMG USGS NED Original Product Resolution AK IFSAR-D6-L4-C37 2013 ArcGrid 2015 USGS NED Original Product Resolution AK IFSAR-LowerSE-L1-C350 2014 QA Report ArcGrid 2016