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functional theory and ab-initio molecular dynamics simulations) with artificial intelligence techniques to parameterize machine learning force fields and kinetic Monte Carlo methods to model the molten salt
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forefront of protein science and biophysics—tackling the molecular origins of neurodegenerative diseases of the brain. The overall aim of the research is to achieve a deep understanding of how protein
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crystallinity. Therefor prior knowledge of state-of-the-art modelling software and molecular dynamics simulations and quantum mechanical calculations to elucidate the reaction mechanism, together with AI based
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(density functional theory and ab-initio molecular dynamics simulations) with artificial intelligence techniques to parameterize machine learning force fields and kinetic Monte Carlo methods to model
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secondary metabolite research. You will collaborate closely with microbiologists, natural product chemists, and bioinformaticians in a dynamic, creative, and stimulating environment. Our recently renovated
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17 PhD positions - Marie Sklodowska-Curie Doctoral Candidates within the ‘FRESCO4NoPain, Frontier Re
imaging signature and neurotransmitter dynamics of neuromodulatory interventions’, Institute of Cellular and Integrative Neuroscience, the National Centre for Scientific Research, France DC2: ‘Closed-loop