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& Atmospheric Physics Division of the Department of Space Research and Space Technology (DTU Space), current focus areas cover exoplanets, large-scale structure of the universe, physics of compact objects, space
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-efficient magnetic heating/cooling device. Qualified applicants must have: PhD degree in physics, astronomy, engineering, computer science or similar. Experience with finite element modeling, ideally Comsol
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Engineering (ESE) is one of the 10 research section of DTU Compute. Our mission encompasses the creation of insights that allow the development of context-aware, distributed, and embedded cyber-physical
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://orcid.org/ ) Brief research statement (max 2 pages) describing your fit and interests in relation to the project Academic Diplomas (MSc/PhD) You can learn more about the recruitment process here
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of publications If you are in the process of finishing your PhD, please include a support letter from your academic supervisor attesting to your progress Applications received after the deadline will not be
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of Copenhagen and also involves partners at the McGill University (Canada) and the Department of Physics at DTU. The goal is to replace the highly inefficient current fertilization practices by a revolutionary
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capture. The research is based on strong competences on electrochemistry, atomic scale and multi-physics modelling, autonomous materials discovery, materials processing, and structural analyses. We also
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://www.kemi.dtu.dk/english/research/physical-chemistry/wei-yan-group . You can read more about DTU Chemistry at www.kemi.dtu.dk If you are applying from abroad, you may find useful information on working in Denmark
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, you will contribute to research-based teaching and the supervision of student projects. Skills in mathematical modelling and machine learning of relevant physical glacier processes (ice sheet and
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characterize new thin-film materials identified by AI and by physics-based first-principles calculations, with the goal of finding suitable properties for light trapping, i.e., a combination of high refractive