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2026 or soon thereafter. Information on the department can be found at: BRIC – University of Copenhagen (ku.dk) Our research The aim of our group is to decipher how differentiation pathways
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) are funded by several grants. Projects are related to development of electrode catalysts for alkaline water electrolysers and general performance improvement (separators, cell geometry etc). Besides
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) are funded by several grants. Projects are related to development of electrode catalysts for alkaline water electrolysers and general performance improvement (separators, cell geometry etc). Besides
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how geometry- and data-driven digital twins of wireless environments can support learning, inference, and coordination in physical AI systems such as robots, vehicles, or distributed sensing platforms
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of archetypical mitigation pathways with their differential deployments of GGR and SRM, and 6) Policy options and governance. Qualification requirements Applicants for a postdoctoral position hold a PhD degree in
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investigations of charge state distributions, fragmentation behavior under collisional- and electron-based dissociation, and differentiation of peptide isoforms and PTMs using negative ion mode workflows. Research
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systematic investigations of charge state distributions, fragmentation behavior under collisional- and electron-based dissociation, and differentiation of peptide isoforms and PTMs using negative ion mode
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chromatin repression. You will work primarily with mouse embryonic stem cells (mESCs) and gastruloid differentiation, combining reporter-based assays with controlled lineage induction to uncover lineage
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scripts, profiling, basic performance optimisation). Experience with CAD tools and CAD automation (e.g. parametric geometry definition and scripting). Compartment and metabolic modelling Experience working
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to improve and optimize stem cell differentiation and manufacturing. As our new colleague you will be part of a diverse and multi-disciplinary team, which is engaged in machine learning and has a drive to make