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the research project “frustrated water in molecular recognition”, which is financed by the Novo Nordisk Foundation through the NERD initiative. Start date is expected to be February 15 2026 or as soon as
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Your Job: Modeling and characterization at molecular level of selected biological processes by performing classical molecular dynamics, and employing enhanced sampling methods and machine learning
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-to-olefins, syngas-to-olefins) involve the production of hydrocarbons from renewable raw materials. In addition to periodic density functional theory (DFT), ab initio methods and molecular dynamics (MD
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–specific ways, and their downstream biological effects remain poorly understood. This project tackles this fundamental gap — by building computational models that simulate what goes wrong in the brain, one
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PhD fellowship at the Copenhagen Center for Glycocalyx Research at the Department of Cellular and Mo
. The place of employment is at the Department of Cellular and Molecular Medicine, Panum, University of Copenhagen. We offer creative and stimulating working conditions in dynamic and international research
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researchers addressing complementary topics and methodology such as Thermodynamic modelling of multi-component planetary degassing/ingassing, Molecular Dynamic simulations of silicate melts, Petrology
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dynamics to cellular metabolism. The student will receive broad training in cell culture, genome engineering, live-cell imaging, biochemical assays, proteomics, and computational data analysis, and will work
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performance of molecular dynamics studies on molecular diffusion models in membranes. The research is oriented towards the study of the physicochemical behavior of new systems based on paramagnetic ions with
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industrial application. It is part of activities in ARCNL’s Source Department. The research activities of the Source Department and its EUV Plasma Processes group aim at the atomic- and molecular-level
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proteins. Perform large-scale molecular simulations of multicomponent protein and lipid assemblies involved in signaling pathways and characterize their interactions as well as their thermodynamic and