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are just examples for inspiration and are not exhaustive for potential methodological approaches. Within the overall framing of the project, the PhD candidate will decide the research questions, theory, and
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robotic structures with intelligent control to study how body deformation and surface interactions enable agile, adaptive movement. The project emphasizes the integration of novel mechanical designs
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complex materials simulations. These agents will assist with setting up, executing, and optimizing electronic structure workflows, from standard ground-state Density Functional Theory (DFT) calculations
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of classical and quantum optics, in combination with solid-state physics. The candidate will collaborate with a strong theory team within POLIMA, to enable a complete description and practical realization
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. PhD position in adaptive responses of defined methanogenic communities (3 years) This position centers on defined syntrophic microbial consortia, mapping how controlled electrochemical environments
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limited knowledge about the benefits and risks of treatment in real-world settings outside the short, controlled framework of clinical trials. In this project, we will combine Danish and Norwegian health
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design new metal–organic frameworks, which translate the exquisite control of molecular synthetic chemistry into robust solid materials. We combine a strong background in synthetic skills with expertise in
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spring 2026. The position is associated to the ERC Synergy project RECLESS (Recycling versus loss in the marine nitrogen cycle: controls, feedbacks, and the impact of expanding low oxygen regions