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to unlock the mysteries connecting TGFs, FGFs, glows, and lightning discharges through modeling and analysis of data from the groundbreaking ALOFT flight campaign. Our group's recent publications revealed
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successful candidate will start from the scientific exploitation of the ASIM mission onboard the International Space Station and the ALOFT flight campaign, contribute to the identification of the scientific
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environment, across flying, ground, and aquatic robot configurations. Our mission is to chart a generalizable path for physical AI and transform how robot morphology and autonomy are co-designed, enabling new
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dissemination Participate in the research group Civil Engineering and Geomatics (https://www.ntnu.no/ivb/research-group-ceg#/view/about ) Be prepared for changes to your work duties after employment. Required
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robotics and AI groups with key partners from industry and the public sector to study how intelligence emerges from the interaction between body, computation, and environment, across flying, ground, and
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, computation, and environment, across flying, ground, and aquatic robot configurations. Our mission is to chart a generalisable path for physical AI and transform how robot morphology and autonomy are co
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the interaction between body, computation, and environment, across flying, ground, and aquatic robot configurations. Our mission is to chart a generalizable path for physical AI and transform how robot morphology
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sector to study how intelligence emerges from the interaction between body, computation, and environment, across flying, ground, and aquatic robot configurations. Our mission is to chart a generalizable