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within research and education. The following will strengthen your application: Familiarity with any of: molecular simulation methods (integrators, force fields, enhanced sampling), structural biology
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-unpublished antiphage defence systems. The focus of this project would be to uncover their molecular workings through integrated structure-functional approach combining phage microbiology, biochemistry and
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well as integration of carbon cycling data with complementary ecophysiology and/or soils data from the sites. Field visits to the site are not essential, but are possible if they can be explicitly motivated
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, integration of new equipment, automation of experiments, development of control systems, etc. You are expected to participate in giving support to the user groups, with the chance to get involved in
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techniques and data analysis to provide a more integrated picture of life processes in the context of health and disease. To be a postdoc fellow at the AMBER programme you will get unprecedented medical
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statistics for multimodal data. The project includes integration of morphological image data, biochemical signatures from Raman spectroscopy, and time-dependent signals using graph-based representations
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acoustofluidic systems. The specific work duties include: Fundamental research in experimental fluid mechanics and biophysics Modeling and building thermo-acoustic systems. Integration of acoustofluidics with
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The Department of Molecular Biosciences, Wenner-Gren Institute (MBW) conducts experimental basic research in molecular cell biology, integrative biology and infection and immune biology. The
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propagation problems, stochastic partial differential equations, geometric numerical integration, optimization, biomathematics, biostatistics, spatial modeling, Bayesian inference, high-dimensional data, large
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applications, specifically targeting the prognosis and risk prediction of Heart Failure (HF) in patients. This research integrates AI safety, explainability, and multimodal medical data analysis to enhance