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) various ESA projects including Glaciers_CCI, Permafrost_CCI, Karakoram Anomaly, and the forthcoming EarthExplorer 10 mission Harmony. (https://climate.esa.int/en/projects/ , https://climate.esa.int/en
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EarthExplorer 10 mission Harmony. (https://climate.esa.int/en/projects/ , https://climate.esa.int/en/Cross_ECV_Projects/ , https://www.esa.int/Applications/Observing_the_Earth/FutureEO
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) various ESA projects including Glaciers_CCI, Permafrost_CCI, Karakoram Anomaly, and the forthcoming EarthExplorer 10 mission Harmony. (https://climate.esa.int/en/projects/ , https://climate.esa.int/en
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EarthExplorer 10 mission Harmony. (https://climate.esa.int/en/projects/ , https://climate.esa.int/en/Cross_ECV_Projects/ , https://www.esa.int/Applications/Observing_the_Earth/FutureEO
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data analysis or remote sensing Have familiarity with planetary science datasets and/or space mission data Demonstrate analytical and critical thinking, as well as problem-solving Be able to work
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, combining space craft data analysis with opportunities for modelling depending on the candidate’s interests. The successful candidate will have the opportunity to join the science teams of three major Mars
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of reactor transients and quantify how surrogate uncertainties propagate through system safety analysis of nuclear installations, using tools such as open simulations platforms. This research will be part of a
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through system safety analysis of nuclear installations, using tools such as open simulations platforms. This research will be part of a larger international collaboration and be a part of the Norwegian
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remote, augmented and virtual spaces. We work on overcoming the challenges of limited temporal and spatial accuracy of such remote interactions. We pay particular attention to the exploration of potential
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holistic research on distributed, real-time interactive and immersive systems, in particular on enabling a first-person presence in remote, augmented and virtual spaces. We work on overcoming the challenges