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methods, thermodynamics of solvation shells, constant-pH simulation methods, Markovian thermodynamics, as well as functional mechanisms of the ribosome, fatty acid synthase, CRISPR/Cas, or intrinsically
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Max Planck Institute for Multidisciplinary Sciences, Göttingen | Gottingen, Niedersachsen | Germany | 3 months ago
are variational free energy methods, thermodynamics of solvation shells, constant-pH simulation methods, Markovian thermodynamics, as well as functional mechanisms of the ribosome, fatty acid synthase, CRISPR/Cas
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Center (CRC) 1690 “Disease Mechanisms and Functional Restoration of Sensory and Motor Systems”. In our project, we study the disease mechanisms of human hearing loss. Based on our cooperative clinical work
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, till end of 2028, possible extension Remuneration according to TV-L CRC1690 is a newly founded DFG-funded collaborative research center investigating disease mechanisms of sensory and motor disorders and
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projects within the open call on “Molecular Mechanisms in Genome Stability & Gene Regulation”. As an IPP PhD student, you will join a community of exceptional scientists working on diverse topics ranging
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of Neurophysiology). We are interested in the cellular and network mechanisms responsible for the generation of spike and wave discharges, the electrophysiological hallmark of absence epilepsy. The project is aimed
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. While communication and social networks are thought to influence one another, the mechanisms underlying this interplay remain poorly understood. Using cutting edge bio-logging technology, this project
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sterilization protocols, qualifying them as important persistence factors and potential drug target. Elucidating their regulatory and working mechanisms will provide important information for potential future
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sensitivity and respect for diversity Desirable: Experience in cheminformatics, molecular modeling, or enzyme mechanisms Familiarity with databases, data mining, and knowledge management Why Join Us: Be part of
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into or out of the microgels depending on various conditions. The mechanism of flow formation is based on the diffusioosmotic phenomenon emerging from concentration gradient of a counter-ions expelled out