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evaluation using nasal epithelial models and tissue Contribute to in vivo validation in an established mouse model of acute seizures Analyze pharmacokinetics, biodistribution, and therapeutic efficacy data Co
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paths at DTU here . Further information Further information may be obtained from Professor Julia Kirch Kirkegaard (jukk@dtu.dk ) and/or Section Head Tanja Schneider (tansch@dtu.dk ). You can read more
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that have been selected for a detailed academic assessment. A committee set up by the head of school is responsible for selecting the most qualified candidates. See this link for further information about
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, high-throughput screening, and state-of-the-art carbohydrate analysis, to validate computational designs and generate data that advances our knowledge of enzymatic carbohydrate synthesis towards
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Prior experience in protein expression in industrially relevant hosts, e.g. Bacillus spp. or Pseudomonas spp. Strong skills within data analyses and representation. As a formal qualification you must hold
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to be able to work independently in the lab and take decisions on experimental setup and data treatment in relation to the overall goals of the project considering also the present state-of-the art. You
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with a background in either communication, journalism, political science, sociology, law, economics, or computational social science, as well as an interest in how AI transforms the media and information
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experience using and developing measurements and models to develop process-based understanding of greenhouse gas emissions like methane at field scales, and linking these to key environmental drivers
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here . Further information Further information may be obtained from Associate Professor Stavros Gaitanaros (staga@dtu.dk ) or the head of the section, Associate Professor Christian Kim Christiansen
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finite fields. The position (2 years, starting in April 2026) is part of the 5 years project CREATE “Algebraic curves in information theory: a treasure yet to discover” financed by the Villum Foundation