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molecular questions in biological systems, and study biological and designed proteins using a combination of classical and advanced techniques including optical and NMR spectroscopy, surface plasmon resonance
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Postdoctoral studies, employing Bioinformatic gene-expression analysis in Neurobiology (scholarship)
analysis from high-throughput sequencing projects, employing in-vitro, preclinical and clinical studies. This position involves designing and executing experiments, data management and analysis, manuscript
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assessment, both nationally and internationally, fostering a broad network of expertise and innovation. This position offers a unique opportunity to join a vibrant community at the forefront of research in
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for designing, planning, and performing image analysis, dealing with large data sets. The project is a close collaboration with international partners, and you are expected to actively interact as a team member
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Postdoctoral studies, employing Bioinformatic gene-expression analysis in Neurobiology (scholarship)
analysis from high-throughput sequencing projects, employing in-vitro, preclinical and clinical studies. This position involves designing and executing experiments, data management and analysis, manuscript
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may be taken into consideration. A suitable candidate will have a PhD in computer science, statistics, sociology, economics, political science or a corresponding subject of relevance to computational
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genomics, with cutting-edge methods, large data sets and good resources A creative role combining a high degree of autonomy with mentorship from Dr. Lappalainen and interactions with colleagues in the lab
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together), including both analytical and numerical work Co-supervise PhD students and master students Interact with experimentalists working on bosonic codes and continuous-variable quantum processors with
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soft, substrate-free, conducting materials directly in living tissues. This work focuses on advancing the understanding of polymerization kinetics, expanding the enzyme repertoire, and designing custom
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the duties. The overarching goal of this research program is to uncover fundamental molecular principles governing membrane protein function, particularly how interactions with subunits, auxiliary proteins