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”) in contaminated areas. Climate models predict that the frequency, intensity and number of short-term extreme precipitation events and flood variability will increase as the global climate changes
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., shape, size, orientation, migration direction, migration velocity and growth rate) constitute geomorphic markers to constrain surface-atmosphere interactions and climate models (e.g. the dune orientation
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the valley networks, noting their distribution and age dates to put the findings in the larger perspective of Mars’ long-term climate change. The project will involve geomorphological mapping using ArcGIS/QGIS
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