-
://www.mn.uio.no/geo/english/research/groups/remotesensing ). We are a growing, lively, friendly and collaborative research environment in cold regions sciences, in particular in glaciology, remote sensing
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, friendly and collaborative research environment in cold regions sciences, in particular in glaciology, remote sensing, geohazards, hydrology and geomatics. We participate in a number of international
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/geohyd and https://www.mn.uio.no/geo/english/research/groups/remotesensing ). We are a growing, lively, friendly and collaborative research environment in cold regions sciences, in particular in
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, friendly and collaborative research environment in cold regions sciences, in particular in glaciology, remote sensing, geohazards, hydrology and geomatics. We participate in a number of international
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alpine environments. However, the rates, spatial patterns and underlying drivers of willow expansion remain insufficiently understood. Long-term observations are scarce, and the relative effects of climate
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://www.mn.uio.no/geo/english/about/organisation/geohyd and https://www.mn.uio.no/geo/english/research/groups/remotesensing ). We are a growing, lively, friendly and collaborative research environment in cold
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Master’s degree, you may still apply. Documented fluency in English and be able to work in an international environment. Demonstrated practical experience using any of the satellite remote sensing systems
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impact here . The role will be based within Cranfield Environment Centre, which undertakes internationally recognised research focused on understanding and managing environmental change through
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the DIWA Flagship (approximately 50%) The research component is linked to the DIWA Flagship’s goal of developing digital twins of aquatic environments, novel observation systems, and integrated analysis and
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, R, or Python. 4. Experience in processing and analyzing diverse remote sensing datasets. 5. Ability to work effectively in an interdisciplinary and collaborative research environment. 6. Strong