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interaction with the environment, with the goal of understanding their optical signatures and improve their performance. You will work in close collaboration with the experimental team. Your theory will provide
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uncertainty Contribute to the coordination activities in the Urban M2O project, i.e. interacting with project partners, collecting relevant information and preparing reporting material to the EU commission
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application of cumulative impact assessment model using food webs, which is intended to assess impact of multi-stressors on trophic and non-trophic interactions networks. The modelling will be primarily based
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application of cumulative impact assessment model using food webs, which is intended to assess impact of multi-stressors on trophic and non-trophic interactions networks. The modelling will be primarily based
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segmentation of organs from medical images; generation of simulation-ready surface and volumetric meshes from segmentations; and modelling realistic boundary conditions, particularly the interaction between
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strategy (PMIDs: 29123070, 33621493, 33087936, 30566856, 39947938; doi: https://doi.org/10.1101/2025.03.15.641049 ). Postdoctoral Projects Project 1: Replisome Dynamics, Replication Stress, and Cancer
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and/or language skills Hands-on skills and programming experience Who we are The robot design and control team led by Xuping Zhang is dedicated to advancing robotic interaction and manipulation, with a
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characterization of the intrinsically disordered regions of plant hormone transporters – initially focusing on auxin transporters of the PIN family and their interactions. Expected start date and duration of
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Applications are invited for a 2-year postdoc position in the field of legume-rhizobium interactions and symbiotic nitrogen fixation at the Department of Molecular Biology and Genetics, Aarhus
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, 33621493, 33087936, 30566856, 39947938; doi: https://doi.org/10.1101/2025.03.15.641049 ). Postdoctoral Projects Project 1: Replisome Dynamics, Replication Stress, and Cancer Vulnerabilities This project aims