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- Leibniz Institute for Food Systems Biology at the Technical University of MunichFood Systems Biology at the Technical University of Munich
- PhD Programme "Gene Regulation in Evolution"
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research will involve a combination of quantum and molecular dynamics simulations as well as electronic structure calculations with some similarities to earlier work on charge and excitation energy
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gap are to be described with molecular dynamics simulation methods and coupled to a global fluid mechanics simulation. Furthermore, the obtained pressure distribution in the lubrication gap leads
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with Evolutionary Theoretician Hanna Kokko and her team will model not only the gene regulatory networks underlying worker specialization, but also use evolutionary simulations to investigate how a
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• Peptide docking • Virtual screening • classical explicit solvent/membrane Molecular Dynamics simulations • enhancing sampling Molecular Dynamics simulations Requirements: The ideal applicant has a strong
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Leibniz Institute for Food Systems Biology at the Technical University of MunichFood Systems Biology at the Technical University of Munich | Freising, Bayern | Germany | 16 days ago
Virtual screening classical explicit solvent/membrane Molecular Dynamics simulations enhancing sampling Molecular Dynamics simulations Requirements: The ideal applicant has a strong background in physical
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Freshwater Plant Stress Ecology starting on 01.09.2024. We are looking for a highly motivated candidate to study the tolerance of the freshwater model plant Stuckenia pectinata to warming and anoxia including
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combination of molecular dynamics simulations and experimental techniques (solid-supported membrane electrophysiology, fluorescence spectroscopy), with the aim to understand transproter dysfunction at atomic
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simulations enhancing sampling Molecular Dynamics simulations Requirements: The ideal applicant has a strong background in physical/computational chemistry, as well as data analysis and solid English-language
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the Faculty of Physics at LMU Munich designs and experimentally realizes complex nanophotonic systems for applications in strong light-matter coupling, molecular spectroscopy, and 2D materials research. A
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docking Peptide docking Virtual screening classical explicit solvent/membrane Molecular Dynamics simulations enhancing sampling Molecular Dynamics simulations Requirements: The ideal applicant has a strong