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Album caption: South side of Mount ST. Helens. Qc, Cave Basalt(Holocene; dashed lines indicate approximate boundaries. Numbers, U.S. Forest Service roads. Photograph by Austin Post, taken June 30, 1980. Handwritten notes on album caption: (Negative?).
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Album caption: Northeast side of Mount St. Helen's. NFTRV, North Fork Toutle River Valley. Dashed line, U.S. Service Road 99. Photograph by Bob Krimmel, taken September 10, 1980. Handwritten notes on album caption: Negative?
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These data are orthorectified radar intensity images (ORI) derived from interferometric synthetic aperture radar (ifsar) data. An ORI is a high-resolution image derived from ifsar which has geometric distortions removed. Unlike optical imagery, ifsar can be collected in cloudy conditions. The USGS performs minimal quality assurance and no reprocessing of the ORI data. USGS distributes the ORI data as received from the contractors, partners or contributing entities.
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These data are orthorectified radar intensity images (ORI) derived from interferometric synthetic aperture radar (ifsar) data. An ORI is a high-resolution image derived from ifsar which has geometric distortions removed. Unlike optical imagery, ifsar can be collected in cloudy conditions. The USGS performs minimal quality assurance and no reprocessing of the ORI data. USGS distributes the ORI data as received from the contractors, partners or contributing entities.
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These data are orthorectified radar intensity images (ORI) derived from interferometric synthetic aperture radar (ifsar) data. An ORI is a high-resolution image derived from ifsar which has geometric distortions removed. Unlike optical imagery, ifsar can be collected in cloudy conditions. The USGS performs minimal quality assurance and no reprocessing of the ORI data. USGS distributes the ORI data as received from the contractors, partners or contributing entities.
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These data are orthorectified radar intensity images (ORI) derived from interferometric synthetic aperture radar (ifsar) data. An ORI is a high-resolution image derived from ifsar which has geometric distortions removed. Unlike optical imagery, ifsar can be collected in cloudy conditions. The USGS performs minimal quality assurance and no reprocessing of the ORI data. USGS distributes the ORI data as received from the contractors, partners or contributing entities.
thumbnail
These data are orthorectified radar intensity images (ORI) derived from interferometric synthetic aperture radar (ifsar) data. An ORI is a high-resolution image derived from ifsar which has geometric distortions removed. Unlike optical imagery, ifsar can be collected in cloudy conditions. The USGS performs minimal quality assurance and no reprocessing of the ORI data. USGS distributes the ORI data as received from the contractors, partners or contributing entities.
thumbnail
These data are orthorectified radar intensity images (ORI) derived from interferometric synthetic aperture radar (ifsar) data. An ORI is a high-resolution image derived from ifsar which has geometric distortions removed. Unlike optical imagery, ifsar can be collected in cloudy conditions. The USGS performs minimal quality assurance and no reprocessing of the ORI data. USGS distributes the ORI data as received from the contractors, partners or contributing entities.
thumbnail
These data are orthorectified radar intensity images (ORI) derived from interferometric synthetic aperture radar (ifsar) data. An ORI is a high-resolution image derived from ifsar which has geometric distortions removed. Unlike optical imagery, ifsar can be collected in cloudy conditions. The USGS performs minimal quality assurance and no reprocessing of the ORI data. USGS distributes the ORI data as received from the contractors, partners or contributing entities.
thumbnail
These data are orthorectified radar intensity images (ORI) derived from interferometric synthetic aperture radar (ifsar) data. An ORI is a high-resolution image derived from ifsar which has geometric distortions removed. Unlike optical imagery, ifsar can be collected in cloudy conditions. The USGS performs minimal quality assurance and no reprocessing of the ORI data. USGS distributes the ORI data as received from the contractors, partners or contributing entities.
thumbnail
These data are orthorectified radar intensity images (ORI) derived from interferometric synthetic aperture radar (ifsar) data. An ORI is a high-resolution image derived from ifsar which has geometric distortions removed. Unlike optical imagery, ifsar can be collected in cloudy conditions. The USGS performs minimal quality assurance and no reprocessing of the ORI data. USGS distributes the ORI data as received from the contractors, partners or contributing entities.
thumbnail
These data are orthorectified radar intensity images (ORI) derived from interferometric synthetic aperture radar (ifsar) data. An ORI is a high-resolution image derived from ifsar which has geometric distortions removed. Unlike optical imagery, ifsar can be collected in cloudy conditions. The USGS performs minimal quality assurance and no reprocessing of the ORI data. USGS distributes the ORI data as received from the contractors, partners or contributing entities.
thumbnail
These data are orthorectified radar intensity images (ORI) derived from interferometric synthetic aperture radar (ifsar) data. An ORI is a high-resolution image derived from ifsar which has geometric distortions removed. Unlike optical imagery, ifsar can be collected in cloudy conditions. The USGS performs minimal quality assurance and no reprocessing of the ORI data. USGS distributes the ORI data as received from the contractors, partners or contributing entities.
thumbnail
These data are orthorectified radar intensity images (ORI) derived from interferometric synthetic aperture radar (ifsar) data. An ORI is a high-resolution image derived from ifsar which has geometric distortions removed. Unlike optical imagery, ifsar can be collected in cloudy conditions. The USGS performs minimal quality assurance and no reprocessing of the ORI data. USGS distributes the ORI data as received from the contractors, partners or contributing entities.
thumbnail
These data are orthorectified radar intensity images (ORI) derived from interferometric synthetic aperture radar (ifsar) data. An ORI is a high-resolution image derived from ifsar which has geometric distortions removed. Unlike optical imagery, ifsar can be collected in cloudy conditions. The USGS performs minimal quality assurance and no reprocessing of the ORI data. USGS distributes the ORI data as received from the contractors, partners or contributing entities.
thumbnail
These data are orthorectified radar intensity images (ORI) derived from interferometric synthetic aperture radar (ifsar) data. An ORI is a high-resolution image derived from ifsar which has geometric distortions removed. Unlike optical imagery, ifsar can be collected in cloudy conditions. The USGS performs minimal quality assurance and no reprocessing of the ORI data. USGS distributes the ORI data as received from the contractors, partners or contributing entities.
thumbnail
These data are orthorectified radar intensity images (ORI) derived from interferometric synthetic aperture radar (ifsar) data. An ORI is a high-resolution image derived from ifsar which has geometric distortions removed. Unlike optical imagery, ifsar can be collected in cloudy conditions. The USGS performs minimal quality assurance and no reprocessing of the ORI data. USGS distributes the ORI data as received from the contractors, partners or contributing entities.
thumbnail
These data are orthorectified radar intensity images (ORI) derived from interferometric synthetic aperture radar (ifsar) data. An ORI is a high-resolution image derived from ifsar which has geometric distortions removed. Unlike optical imagery, ifsar can be collected in cloudy conditions. The USGS performs minimal quality assurance and no reprocessing of the ORI data. USGS distributes the ORI data as received from the contractors, partners or contributing entities.
thumbnail
These data are orthorectified radar intensity images (ORI) derived from interferometric synthetic aperture radar (ifsar) data. An ORI is a high-resolution image derived from ifsar which has geometric distortions removed. Unlike optical imagery, ifsar can be collected in cloudy conditions. The USGS performs minimal quality assurance and no reprocessing of the ORI data. USGS distributes the ORI data as received from the contractors, partners or contributing entities.
thumbnail
These data are orthorectified radar intensity images (ORI) derived from interferometric synthetic aperture radar (ifsar) data. An ORI is a high-resolution image derived from ifsar which has geometric distortions removed. Unlike optical imagery, ifsar can be collected in cloudy conditions. The USGS performs minimal quality assurance and no reprocessing of the ORI data. USGS distributes the ORI data as received from the contractors, partners or contributing entities.


map background search result map search result map USGS NED Orthorectified Radar Intensity Image AK IFSAR-Arctic-L2-C40 2013 TIFF 2016 USGS NED Orthorectified Radar Intensity Image AK IFSAR-D6-L2-C59 2013 TIFF 2015 USGS NED Orthorectified Radar Intensity Image AK IFSAR-D6-L2-C60 2013 TIFF 2015 USGS NED Orthorectified Radar Intensity Image Alaska Mid-Accuracy DEM Summer 2015 TIFF 2016 USGS NED Orthorectified Radar Intensity Image AK IFSAR-Cell4 2010 TIFF 2015 USGS NED Orthorectified Radar Intensity Image AK IFSAR-Cell14 2010 TIFF 2015 USGS NED Orthorectified Radar Intensity Image AK IFSAR-D5-L4-C135 2012 TIFF 2015 USGS NED Orthorectified Radar Intensity Image AK IFSAR-D5-L4-C161 2012 TIFF 2015 USGS NED Orthorectified Radar Intensity Image AK IFSAR-D5-L5-C6 2012 TIFF 2015 USGS NED Orthorectified Radar Intensity Image AK IFSAR-D5-L5-C27 2012 TIFF 2015 USGS NED Orthorectified Radar Intensity Image AK IFSAR-D5-L6-C30 2012 TIFF 2015 USGS NED Orthorectified Radar Intensity Image AK IFSAR-D5-L6-C81 2012 TIFF 2015 USGS NED Orthorectified Radar Intensity Image AK IFSAR-Sum-L7-C290 2012 TIFF 2017 USGS NED Orthorectified Radar Intensity Image AK IFSAR-Sum-L7-C291 2012 TIFF 2017 USGS NED Orthorectified Radar Intensity Image AK IFSAR-Chugach2-C391 2014 TIFF 2018 USGS NED Orthorectified Radar Intensity Image AK IFSAR Summer C301 2017 TIFF 2019 USGS NED Orthorectified Radar Intensity Image AK IFSAR NPRA Recollect C4 2018 TIFF 2019 USGS Orthorectified Radar Intensity Image AK IFSAR Eastern Aleutians Lot3 C386 2018 USGS NED Orthorectified Radar Intensity Image AK IFSAR NPRA Recollect C4 2018 TIFF 2019 USGS Orthorectified Radar Intensity Image AK IFSAR Eastern Aleutians Lot3 C386 2018 USGS NED Orthorectified Radar Intensity Image AK IFSAR-D5-L5-C6 2012 TIFF 2015 USGS NED Orthorectified Radar Intensity Image AK IFSAR-Sum-L7-C291 2012 TIFF 2017 USGS NED Orthorectified Radar Intensity Image AK IFSAR-Chugach2-C391 2014 TIFF 2018 USGS NED Orthorectified Radar Intensity Image AK IFSAR-D6-L2-C60 2013 TIFF 2015 USGS NED Orthorectified Radar Intensity Image AK IFSAR-D6-L2-C59 2013 TIFF 2015 USGS NED Orthorectified Radar Intensity Image AK IFSAR Summer C301 2017 TIFF 2019 USGS NED Orthorectified Radar Intensity Image AK IFSAR-Cell14 2010 TIFF 2015 USGS NED Orthorectified Radar Intensity Image Alaska Mid-Accuracy DEM Summer 2015 TIFF 2016 USGS NED Orthorectified Radar Intensity Image AK IFSAR-Arctic-L2-C40 2013 TIFF 2016 USGS NED Orthorectified Radar Intensity Image AK IFSAR-D5-L4-C161 2012 TIFF 2015 USGS NED Orthorectified Radar Intensity Image AK IFSAR-Cell4 2010 TIFF 2015 USGS NED Orthorectified Radar Intensity Image AK IFSAR-D5-L4-C135 2012 TIFF 2015 USGS NED Orthorectified Radar Intensity Image AK IFSAR-D5-L6-C81 2012 TIFF 2015 USGS NED Orthorectified Radar Intensity Image AK IFSAR-D5-L6-C30 2012 TIFF 2015 USGS NED Orthorectified Radar Intensity Image AK IFSAR-D5-L5-C27 2012 TIFF 2015 USGS NED Orthorectified Radar Intensity Image AK IFSAR-Sum-L7-C290 2012 TIFF 2017