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during downstream processing. Theoretical investigation of molecule stability during DSP, using molecular interaction simulations such as e.g. Molecular dynamics (MD). Combination of PAT and data driven
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PhD position (f/m/d) “How to regulate the duration of mitosis and control cell fate decisions” Centre for Molecular Biology (ZMBH) Heidelberg University, Germany We are seeking highly motivated PhD
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, carbohydrate-active enzymes, polymer chemistry, spectroscopic methods, material science, 3D-printing, statistical physics and molecular dynamic simulations, formulation technologies. Excellent communication
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inviting applications for a PhD Student (f/m/x) in the field of Theory and Methods for Non-equilibrium Theory and Atomistic Simulations of Complex Biomolecules Possible projects are variational free energy
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Max Planck Institute for Multidisciplinary Sciences, Göttingen | Gottingen, Niedersachsen | Germany | about 2 months ago
. Helmut Grubmüller) invites applications for a PhD Student (f/m/d) in the field of Theory and Methods for Non-equilibrium Theory and Atomistic Simulations of Complex Biomolecule. Possible projects
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drug development to inhibit or deregulate disaggregase activities. We want to dissect the molecular basis of ClpG and ClpL activity control. How is the activity of the disaggregases repressed in absence
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time-scales: ab initio methods for the description of reaction processes, for the determination of electrochemical stabilities and for the optimisation of force fields; molecular dynamics simulations
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, suggesting a novel proton-coupled transport mechanism. Expected Results: Investigation of the molecular mechanism of proton transfer in SLC26A11 Performing molecular dynamics simulations, both classical and
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institution. At the Faculty of Chemistry and Food Chemistry, the Chair of Molecular Functional Materials offers within the Collaborative Research Center 1415 (CRC 1415, Chemistry of Synthetic Two-Dimensional
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. At the Faculty of Chemistry and Food Chemistry, the Chair of Molecular Functional Materials offers within the Collaborative Research Center 1415 (CRC 1415, Chemistry of Synthetic Two-Dimensional Materials) a