File:Elevation of Phoenicis Lacus region ESA204514.tiff
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[edit]DescriptionElevation of Phoenicis Lacus region ESA204514.tiff |
English: Phoenicis Lacus was formed by the uplift of the Tharsis volcanic plateau. The continual episodes of strong volcanic activity in Tharsis not only lifted the plateau, but also deformed Phoenicis Lacus, creating uplifted blocks and multiple fault lines at different orientations. A prominent collapse feature in Phoenicis Lacus sinks to a depth of about 3 km below the surrounding terrain. This image was created using a Digital Terrain Model (DTM) obtained from the High-Resolution Stereo Camera on ESA’s Mars Express spacecraft. Elevation data from the DTM are colour-coded: purple indicates the lowest-lying regions, and grey the highest elevations. The scale is in metres. |
Date | |
Source | http://www.esa.int/spaceinimages/Images/2010/11/Elevation_of_Phoenicis_Lacus_region |
Author | European Space Agency |
Permission (Reusing this file) |
ESA/DLR/FU Berlin (G. Neukum),CC BY-SA 3.0 IGO |
Other versions |
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Title InfoField | Elevation of Phoenicis Lacus region |
Mission InfoField | Mars Express |
Activity InfoField | Space Science |
Licensing
[edit]This file is licensed under the Creative Commons Attribution-ShareAlike 3.0 IGO license.
Attribution: ESA/DLR/FU Berlin (G. Neukum)
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Date/Time | Thumbnail | Dimensions | User | Comment | |
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current | 14:35, 24 May 2017 | 7,998 × 3,500 (52.88 MB) | Fæ (talk | contribs) | European Space Agency, Id 204514, http://www.esa.int/spaceinimages/Images/2010/11/Elevation_of_Phoenicis_Lacus_region, User:Fæ/Project_list/ESA |
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Image title | DB-TIFF |
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height | 3,500 |
width | 7,998 |
Width | 7,998 px |
Height | 3,500 px |
Bits per component |
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Compression scheme | LZW |
Pixel composition | RGB |
Orientation | Normal |
Number of components | 3 |
Number of rows per strip | 32 |
Horizontal resolution | 72 dpi |
Vertical resolution | 72 dpi |
Data arrangement | planar format |
Software used | Adobe Photoshop CS3 Windows |
File change date and time | 16:34, 13 October 2010 |
Color space | sRGB |