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1,190 results for “Jornada Basin”
LEDAPS corrected Landsat Enhanced Thematic Mapper image data for Jornada Basin LTER collected on 2008-06-08
This LTER Remote Sensing spatial raster dataset consists of LEDAPS corrected Landsat Enhanced Thematic Mapper image data for Jornada Basin LTER, originally collected on 2008-06-08 (17:27:09.4340000Z) by Landsat 5, row 37, path 33. Cloud cover was 0 percent. The Landsat Ecosystem Disturbance Adaptive Processing System (LEDAPS) software was originally developed by the National Aeronautics and Space Administration–Goddard Space Flight Center and the University of Maryland to produce top-of-atmosphere reflectance from Landsat Thematic Mapper and Enhanced Thematic Mapper Plus Level 1 digital numbers and to apply atmospheric corrections to generate a surface-reflectance product. The U.S. Geological Survey (USGS) has adopted the LEDAPS algorithm for producing the Landsat Surface Reflectance Climate Data Record. NASA Landsat Program, 2009, Landsat TM LT50330372008160PAC01, LPGS_12.0.2, USGS, Sioux Falls, 2012-08-18T06:59:35Z.
LEDAPS corrected Landsat Enhanced Thematic Mapper image data for Jornada Basin LTER collected on 2008-06-24
This LTER Remote Sensing spatial raster dataset consists of LEDAPS corrected Landsat Enhanced Thematic Mapper image data for Jornada Basin LTER, originally collected on 2008-06-24 (17:26:42.6200060Z) by Landsat 5, row 037, path 033. Cloud cover was 10.76 percent. The Landsat Ecosystem Disturbance Adaptive Processing System (LEDAPS) software was originally developed by the National Aeronautics and Space Administration–Goddard Space Flight Center and the University of Maryland to produce top-of-atmosphere reflectance from Landsat Thematic Mapper and Enhanced Thematic Mapper Plus Level 1 digital numbers and to apply atmospheric corrections to generate a surface-reflectance product. The U.S. Geological Survey (USGS) has adopted the LEDAPS algorithm for producing the Landsat Surface Reflectance Climate Data Record. NASA Landsat Program, 2009, Landsat TM LT50330372008176EDC00, LPGS_12.1.1, USGS, Sioux Falls, 2012-09-27T02:07:26Z.
LEDAPS corrected Landsat Enhanced Thematic Mapper image data for Jornada Basin LTER collected on 2008-08-11
This LTER Remote Sensing spatial raster dataset consists of LEDAPS corrected Landsat Enhanced Thematic Mapper image data for Jornada Basin LTER, originally collected on 2008-08-11 (17:25:18.2570940Z) by Landsat 5, row 37, path 33. Cloud cover was 31.9 percent. The Landsat Ecosystem Disturbance Adaptive Processing System (LEDAPS) software was originally developed by the National Aeronautics and Space Administration–Goddard Space Flight Center and the University of Maryland to produce top-of-atmosphere reflectance from Landsat Thematic Mapper and Enhanced Thematic Mapper Plus Level 1 digital numbers and to apply atmospheric corrections to generate a surface-reflectance product. The U.S. Geological Survey (USGS) has adopted the LEDAPS algorithm for producing the Landsat Surface Reflectance Climate Data Record. NASA Landsat Program, 2009, Landsat TM LT50330372008224PAC01, LPGS_12.0.2, USGS, Sioux Falls, 2012-08-18T07:00:15Z.
LEDAPS corrected Landsat Enhanced Thematic Mapper image data for Jornada Basin LTER collected on 2008-09-12
This LTER Remote Sensing spatial raster dataset consists of LEDAPS corrected Landsat Enhanced Thematic Mapper image data for Jornada Basin LTER, originally collected on 2008-09-12 (17:24:25.8230380Z) by Landsat 5, row 37, path 33. Cloud cover was 47.25 percent. The Landsat Ecosystem Disturbance Adaptive Processing System (LEDAPS) software was originally developed by the National Aeronautics and Space Administration–Goddard Space Flight Center and the University of Maryland to produce top-of-atmosphere reflectance from Landsat Thematic Mapper and Enhanced Thematic Mapper Plus Level 1 digital numbers and to apply atmospheric corrections to generate a surface-reflectance product. The U.S. Geological Survey (USGS) has adopted the LEDAPS algorithm for producing the Landsat Surface Reflectance Climate Data Record. NASA Landsat Program, 2009, Landsat TM LT50330372008256PAC01, LPGS_12.0.2, USGS, Sioux Falls, 2012-08-18T07:02:25Z.
LEDAPS corrected Landsat Enhanced Thematic Mapper image data for Jornada Basin LTER collected on 2008-09-28
This LTER Remote Sensing spatial raster dataset consists of LEDAPS corrected Landsat Enhanced Thematic Mapper image data for Jornada Basin LTER, originally collected on 2008-09-28 (17:23:56.4280000Z) by Landsat 5, row 37, path 33. Cloud cover was 10.36 percent. The Landsat Ecosystem Disturbance Adaptive Processing System (LEDAPS) software was originally developed by the National Aeronautics and Space Administration–Goddard Space Flight Center and the University of Maryland to produce top-of-atmosphere reflectance from Landsat Thematic Mapper and Enhanced Thematic Mapper Plus Level 1 digital numbers and to apply atmospheric corrections to generate a surface-reflectance product. The U.S. Geological Survey (USGS) has adopted the LEDAPS algorithm for producing the Landsat Surface Reflectance Climate Data Record. NASA Landsat Program, 2009, Landsat TM LT50330372008272PAC01, LPGS_12.0.2, USGS, Sioux Falls, 2012-08-18T07:00:42Z.
LEDAPS corrected Landsat Enhanced Thematic Mapper image data for Jornada Basin LTER collected on 2008-10-30
This LTER Remote Sensing spatial raster dataset consists of LEDAPS corrected Landsat Enhanced Thematic Mapper image data for Jornada Basin LTER, originally collected on 2008-10-30 (17:22:51.0450190Z) by Landsat 5, row 37, path 33. Cloud cover was 9.96 percent. The Landsat Ecosystem Disturbance Adaptive Processing System (LEDAPS) software was originally developed by the National Aeronautics and Space Administration–Goddard Space Flight Center and the University of Maryland to produce top-of-atmosphere reflectance from Landsat Thematic Mapper and Enhanced Thematic Mapper Plus Level 1 digital numbers and to apply atmospheric corrections to generate a surface-reflectance product. The U.S. Geological Survey (USGS) has adopted the LEDAPS algorithm for producing the Landsat Surface Reflectance Climate Data Record. NASA Landsat Program, 2009, Landsat TM LT50330372008304PAC01, LPGS_12.0.2, USGS, Sioux Falls, 2012-08-18T07:01:03Z.
LEDAPS corrected Landsat Enhanced Thematic Mapper image data for Jornada Basin LTER collected on 2008-11-15
This LTER Remote Sensing spatial raster dataset consists of LEDAPS corrected Landsat Enhanced Thematic Mapper image data for Jornada Basin LTER, originally collected on 2008-11-15 (17:22:34.5990000Z) by Landsat 5, row 37, path 33. Cloud cover was 11.07 percent. The Landsat Ecosystem Disturbance Adaptive Processing System (LEDAPS) software was originally developed by the National Aeronautics and Space Administration–Goddard Space Flight Center and the University of Maryland to produce top-of-atmosphere reflectance from Landsat Thematic Mapper and Enhanced Thematic Mapper Plus Level 1 digital numbers and to apply atmospheric corrections to generate a surface-reflectance product. The U.S. Geological Survey (USGS) has adopted the LEDAPS algorithm for producing the Landsat Surface Reflectance Climate Data Record. NASA Landsat Program, 2009, Landsat TM LT50330372008320PAC01, LPGS_12.0.2, USGS, Sioux Falls, 2012-08-18T07:00:28Z.
LEDAPS corrected Landsat Enhanced Thematic Mapper image data for Jornada Basin LTER collected on 2008-12-01
This LTER Remote Sensing spatial raster dataset consists of LEDAPS corrected Landsat Enhanced Thematic Mapper image data for Jornada Basin LTER, originally collected on 2008-12-01 (17:23:06.0530380Z) by Landsat 5, row 37, path 33. Cloud cover was 13.16 percent. The Landsat Ecosystem Disturbance Adaptive Processing System (LEDAPS) software was originally developed by the National Aeronautics and Space Administration–Goddard Space Flight Center and the University of Maryland to produce top-of-atmosphere reflectance from Landsat Thematic Mapper and Enhanced Thematic Mapper Plus Level 1 digital numbers and to apply atmospheric corrections to generate a surface-reflectance product. The U.S. Geological Survey (USGS) has adopted the LEDAPS algorithm for producing the Landsat Surface Reflectance Climate Data Record. NASA Landsat Program, 2009, Landsat TM LT50330372008336PAC01, LPGS_12.0.2, USGS, Sioux Falls, 2012-08-18T07:00:07Z.
LEDAPS corrected Landsat Enhanced Thematic Mapper image data for Jornada Basin LTER collected on 2009-01-02
This LTER Remote Sensing spatial raster dataset consists of LEDAPS corrected Landsat Enhanced Thematic Mapper image data for Jornada Basin LTER, originally collected on 2009-01-02 (17:24:01.2860560Z) by Landsat 5, row 37, path 33. Cloud cover was 13.21 percent. The Landsat Ecosystem Disturbance Adaptive Processing System (LEDAPS) software was originally developed by the National Aeronautics and Space Administration–Goddard Space Flight Center and the University of Maryland to produce top-of-atmosphere reflectance from Landsat Thematic Mapper and Enhanced Thematic Mapper Plus Level 1 digital numbers and to apply atmospheric corrections to generate a surface-reflectance product. The U.S. Geological Survey (USGS) has adopted the LEDAPS algorithm for producing the Landsat Surface Reflectance Climate Data Record. NASA Landsat Program, 2009, Landsat TM LT50330372009002PAC01, LPGS_12.0.2, USGS, Sioux Falls, 2012-08-18T06:59:19Z.
LEDAPS corrected Landsat Enhanced Thematic Mapper image data for Jornada Basin LTER collected on 2009-01-18
This LTER Remote Sensing spatial raster dataset consists of LEDAPS corrected Landsat Enhanced Thematic Mapper image data for Jornada Basin LTER, originally collected on 2009-01-18 (17:24:27.0620190Z) by Landsat 5, row 37, path 33. Cloud cover was 14.73 percent. The Landsat Ecosystem Disturbance Adaptive Processing System (LEDAPS) software was originally developed by the National Aeronautics and Space Administration–Goddard Space Flight Center and the University of Maryland to produce top-of-atmosphere reflectance from Landsat Thematic Mapper and Enhanced Thematic Mapper Plus Level 1 digital numbers and to apply atmospheric corrections to generate a surface-reflectance product. The U.S. Geological Survey (USGS) has adopted the LEDAPS algorithm for producing the Landsat Surface Reflectance Climate Data Record. NASA Landsat Program, 2009, Landsat TM LT50330372009018PAC01, LPGS_12.0.2, USGS, Sioux Falls, 2012-08-18T06:58:31Z.
LEDAPS corrected Landsat Enhanced Thematic Mapper image data for Jornada Basin LTER collected on 2009-02-03
This LTER Remote Sensing spatial raster dataset consists of LEDAPS corrected Landsat Enhanced Thematic Mapper image data for Jornada Basin LTER, originally collected on 2009-02-03 (17:24:52.5990810Z) by Landsat 5, row 37, path 33. Cloud cover was 9.88 percent. The Landsat Ecosystem Disturbance Adaptive Processing System (LEDAPS) software was originally developed by the National Aeronautics and Space Administration–Goddard Space Flight Center and the University of Maryland to produce top-of-atmosphere reflectance from Landsat Thematic Mapper and Enhanced Thematic Mapper Plus Level 1 digital numbers and to apply atmospheric corrections to generate a surface-reflectance product. The U.S. Geological Survey (USGS) has adopted the LEDAPS algorithm for producing the Landsat Surface Reflectance Climate Data Record. NASA Landsat Program, 2009, Landsat TM LT50330372009034PAC01, LPGS_12.0.2, USGS, Sioux Falls, 2012-08-18T06:59:16Z.
LEDAPS corrected Landsat Enhanced Thematic Mapper image data for Jornada Basin LTER collected on 2009-02-19
This LTER Remote Sensing spatial raster dataset consists of LEDAPS corrected Landsat Enhanced Thematic Mapper image data for Jornada Basin LTER, originally collected on 2009-02-19 (17:25:16.5570690Z) by Landsat 5, row 37, path 33. Cloud cover was 9.4 percent. The Landsat Ecosystem Disturbance Adaptive Processing System (LEDAPS) software was originally developed by the National Aeronautics and Space Administration–Goddard Space Flight Center and the University of Maryland to produce top-of-atmosphere reflectance from Landsat Thematic Mapper and Enhanced Thematic Mapper Plus Level 1 digital numbers and to apply atmospheric corrections to generate a surface-reflectance product. The U.S. Geological Survey (USGS) has adopted the LEDAPS algorithm for producing the Landsat Surface Reflectance Climate Data Record. NASA Landsat Program, 2009, Landsat TM LT50330372009050PAC01, LPGS_12.0.2, USGS, Sioux Falls, 2012-08-18T07:00:07Z.
LEDAPS corrected Landsat Enhanced Thematic Mapper image data for Jornada Basin LTER collected on 2009-03-07
This LTER Remote Sensing spatial raster dataset consists of LEDAPS corrected Landsat Enhanced Thematic Mapper image data for Jornada Basin LTER, originally collected on 2009-03-07 (17:25:39.2600750Z) by Landsat 5, row 37, path 33. Cloud cover was 26.97 percent. The Landsat Ecosystem Disturbance Adaptive Processing System (LEDAPS) software was originally developed by the National Aeronautics and Space Administration–Goddard Space Flight Center and the University of Maryland to produce top-of-atmosphere reflectance from Landsat Thematic Mapper and Enhanced Thematic Mapper Plus Level 1 digital numbers and to apply atmospheric corrections to generate a surface-reflectance product. The U.S. Geological Survey (USGS) has adopted the LEDAPS algorithm for producing the Landsat Surface Reflectance Climate Data Record. NASA Landsat Program, 2009, Landsat TM LT50330372009066PAC01, LPGS_12.0.2, USGS, Sioux Falls, 2012-08-18T06:59:56Z.
LEDAPS corrected Landsat Enhanced Thematic Mapper image data for Jornada Basin LTER collected on 2009-03-23
This LTER Remote Sensing spatial raster dataset consists of LEDAPS corrected Landsat Enhanced Thematic Mapper image data for Jornada Basin LTER, originally collected on 2009-03-23 (17:26:00.9220310Z) by Landsat 5, row 37, path 33. Cloud cover was 0 percent. The Landsat Ecosystem Disturbance Adaptive Processing System (LEDAPS) software was originally developed by the National Aeronautics and Space Administration–Goddard Space Flight Center and the University of Maryland to produce top-of-atmosphere reflectance from Landsat Thematic Mapper and Enhanced Thematic Mapper Plus Level 1 digital numbers and to apply atmospheric corrections to generate a surface-reflectance product. The U.S. Geological Survey (USGS) has adopted the LEDAPS algorithm for producing the Landsat Surface Reflectance Climate Data Record. NASA Landsat Program, 2009, Landsat TM LT50330372009082PAC01, LPGS_12.0.2, USGS, Sioux Falls, 2012-08-18T07:00:50Z.
LEDAPS corrected Landsat Enhanced Thematic Mapper image data for Jornada Basin LTER collected on 2009-04-24
This LTER Remote Sensing spatial raster dataset consists of LEDAPS corrected Landsat Enhanced Thematic Mapper image data for Jornada Basin LTER, originally collected on 2009-04-24 (17:26:39.3660440Z) by Landsat 5, row 37, path 33. Cloud cover was 3.88 percent. The Landsat Ecosystem Disturbance Adaptive Processing System (LEDAPS) software was originally developed by the National Aeronautics and Space Administration–Goddard Space Flight Center and the University of Maryland to produce top-of-atmosphere reflectance from Landsat Thematic Mapper and Enhanced Thematic Mapper Plus Level 1 digital numbers and to apply atmospheric corrections to generate a surface-reflectance product. The U.S. Geological Survey (USGS) has adopted the LEDAPS algorithm for producing the Landsat Surface Reflectance Climate Data Record. NASA Landsat Program, 2009, Landsat TM LT50330372009114PAC01, LPGS_12.0.2, USGS, Sioux Falls, 2012-08-18T07:00:10Z.
LEDAPS corrected Landsat Enhanced Thematic Mapper image data for Jornada Basin LTER collected on 2009-05-10
This LTER Remote Sensing spatial raster dataset consists of LEDAPS corrected Landsat Enhanced Thematic Mapper image data for Jornada Basin LTER, originally collected on 2009-05-10 (17:26:57.8690310Z) by Landsat 5, row 37, path 33. Cloud cover was 0.08 percent. The Landsat Ecosystem Disturbance Adaptive Processing System (LEDAPS) software was originally developed by the National Aeronautics and Space Administration–Goddard Space Flight Center and the University of Maryland to produce top-of-atmosphere reflectance from Landsat Thematic Mapper and Enhanced Thematic Mapper Plus Level 1 digital numbers and to apply atmospheric corrections to generate a surface-reflectance product. The U.S. Geological Survey (USGS) has adopted the LEDAPS algorithm for producing the Landsat Surface Reflectance Climate Data Record. NASA Landsat Program, 2009, Landsat TM LT50330372009130PAC01, LPGS_12.0.2, USGS, Sioux Falls, 2012-08-18T07:00:13Z.
LEDAPS corrected Landsat Enhanced Thematic Mapper image data for Jornada Basin LTER collected on 2009-05-26
This LTER Remote Sensing spatial raster dataset consists of LEDAPS corrected Landsat Enhanced Thematic Mapper image data for Jornada Basin LTER, originally collected on 2009-05-26 (17:27:15.3870440Z) by Landsat 5, row 37, path 33. Cloud cover was 5.49 percent. The Landsat Ecosystem Disturbance Adaptive Processing System (LEDAPS) software was originally developed by the National Aeronautics and Space Administration–Goddard Space Flight Center and the University of Maryland to produce top-of-atmosphere reflectance from Landsat Thematic Mapper and Enhanced Thematic Mapper Plus Level 1 digital numbers and to apply atmospheric corrections to generate a surface-reflectance product. The U.S. Geological Survey (USGS) has adopted the LEDAPS algorithm for producing the Landsat Surface Reflectance Climate Data Record. NASA Landsat Program, 2009, Landsat TM LT50330372009146PAC01, LPGS_12.0.2, USGS, Sioux Falls, 2012-08-18T06:58:54Z.
LEDAPS corrected Landsat Enhanced Thematic Mapper image data for Jornada Basin LTER collected on 2009-06-11
This LTER Remote Sensing spatial raster dataset consists of LEDAPS corrected Landsat Enhanced Thematic Mapper image data for Jornada Basin LTER, originally collected on 2009-06-11 (17:27:32.5800310Z) by Landsat 5, row 37, path 33. Cloud cover was 23.59 percent. The Landsat Ecosystem Disturbance Adaptive Processing System (LEDAPS) software was originally developed by the National Aeronautics and Space Administration–Goddard Space Flight Center and the University of Maryland to produce top-of-atmosphere reflectance from Landsat Thematic Mapper and Enhanced Thematic Mapper Plus Level 1 digital numbers and to apply atmospheric corrections to generate a surface-reflectance product. The U.S. Geological Survey (USGS) has adopted the LEDAPS algorithm for producing the Landsat Surface Reflectance Climate Data Record. NASA Landsat Program, 2009, Landsat TM LT50330372009162PAC02, LPGS_12.0.2, USGS, Sioux Falls, 2012-08-18T06:59:22Z.
LEDAPS corrected Landsat Enhanced Thematic Mapper image data for Jornada Basin LTER collected on 2009-06-27
This LTER Remote Sensing spatial raster dataset consists of LEDAPS corrected Landsat Enhanced Thematic Mapper image data for Jornada Basin LTER, originally collected on 2009-06-27 (17:27:50.0320380Z) by Landsat 5, row 37, path 33. Cloud cover was 33.35 percent. The Landsat Ecosystem Disturbance Adaptive Processing System (LEDAPS) software was originally developed by the National Aeronautics and Space Administration–Goddard Space Flight Center and the University of Maryland to produce top-of-atmosphere reflectance from Landsat Thematic Mapper and Enhanced Thematic Mapper Plus Level 1 digital numbers and to apply atmospheric corrections to generate a surface-reflectance product. The U.S. Geological Survey (USGS) has adopted the LEDAPS algorithm for producing the Landsat Surface Reflectance Climate Data Record. NASA Landsat Program, 2009, Landsat TM LT50330372009178PAC01, LPGS_12.0.2, USGS, Sioux Falls, 2012-08-18T07:00:39Z.
LEDAPS corrected Landsat Enhanced Thematic Mapper image data for Jornada Basin LTER collected on 2009-07-13
This LTER Remote Sensing spatial raster dataset consists of LEDAPS corrected Landsat Enhanced Thematic Mapper image data for Jornada Basin LTER, originally collected on 2009-07-13 (17:28:06.4010560Z) by Landsat 5, row 37, path 33. Cloud cover was 3.89 percent. The Landsat Ecosystem Disturbance Adaptive Processing System (LEDAPS) software was originally developed by the National Aeronautics and Space Administration–Goddard Space Flight Center and the University of Maryland to produce top-of-atmosphere reflectance from Landsat Thematic Mapper and Enhanced Thematic Mapper Plus Level 1 digital numbers and to apply atmospheric corrections to generate a surface-reflectance product. The U.S. Geological Survey (USGS) has adopted the LEDAPS algorithm for producing the Landsat Surface Reflectance Climate Data Record. NASA Landsat Program, 2009, Landsat TM LT50330372009194PAC02, LPGS_12.0.2, USGS, Sioux Falls, 2012-08-18T06:59:55Z.
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