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The Shuttle Radar Topography Mission (SRTM) is an international research effort that obtained digital elevation models on a near-global scale from 56°S to 60°N, [2]: 4820 to generate the most complete high-resolution digital topographic database of Earth prior to the release of the ASTER GDEM in 2009.
The NASA website hosts a large number of images from the Soviet/Russian space agency, and other non-American space agencies. These are not necessarily in the public domain. Materials based on Hubble Space Telescope data may be copyrighted if they are not explicitly produced by the STScI . [1]
Topographic data from the NASA Shuttle Radar Topography Mission (SRTM3 v.2) (public domain) edited with 3DEM, reprojected in UTM with GDAL , and vectorized with Inkscape ; UTM projection ; WGS84 datum ; shaded relief (composite image of N-W, W and N lightning positions) ; Reference used for the additional data :
This radar system gathered around 8 terabytes of data to produce high-quality 3-D images of the Earth's surface. SRTM used C-band and X-band interferometric synthetic aperture radar (IFSAR) to acquire topographic data of Earth's land mass (between 60°N and 56°S). It produced digital topographic map products which met Interferometric Terrain ...
ASTER provides high-resolution images of Earth in 14 different bands of the electromagnetic spectrum, ranging from visible to thermal infrared light. The resolution of images ranges between 15 and 90 meters. ASTER data is used to create detailed maps of surface temperature of land, emissivity, reflectance, and elevation. [1]
Equirectangular projection of the world; the standard parallel is the equator (plate carrée projection). Equirectangular projection with Tissot's indicatrix of deformation and with the standard parallels lying on the equator True-colour satellite image of Earth in equirectangular projection Height map of planet Earth at 2km per pixel, including oceanic bathymetry information, normalized as 8 ...
Topographic data from the NASA Shuttle Radar Topography Mission (SRTM3 v.2) (public domain) edited with 3DEM, reprojected in UTM with GDAL , and vectorized with Inkscape ; UTM projection ; WGS84 datum ; shaded relief (composite image of N-W, W and N lightning positions) ; Reference used for the additional data :
Organizations around the world use WorldWind to monitor weather patterns, visualize cities and terrain, track vehicle movement, analyze geospatial data and educate humanity about the Earth." It was first developed by NASA in 2003 for use on personal computers and then further developed in concert with the open source community since 2004.
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