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disorders and intellectual disability. Our research aims to understand the molecular mechanisms that govern cytoskeletal dynamics during nervous system development and how their disruption by mutations may
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the intersection of sepsis, microbiology, molecular biology, and renal physiology. Our laboratories use the kidney as a model organ to understand how microbial signals shape tissue function, host responses, and
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to understand dynamic molecular mechanisms underlying protein function. We integrate structural biology, electrophysiology, quantitative biophysics, and computational approaches to visualize transient molecular
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Developmental & Stem Cell Biology, are developing a common theoretical framework for addressing these questions. Beyond the system-specific molecular and cellular mechanisms, we aim to identify dynamical
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intestinal polyp dynamics in a pig model. The Chair for Infection Pathogenesis is looking for academic staff, starting as soon as possible. Background: We are seeking a highly motivated PhD candidate (E13, 65
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directions include: Quantum dynamics of floppy molecules Molecular polaritonics Potential-energy-surface development Methods for computing molecular spectra Use of molecular symmetry in quantum-dynamics
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will work in a collaborative and dynamic research environment focused on understanding the molecular and cellular mechanisms underlying pancreatic cancer. The research associate is offered
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deadline is 16th of November 2026. Departmental specific information The molecular epigenetics (Yuri Schwartz) lab, situated in the Department of Molecular Biology, Umeå University, is a dynamic and
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offers a dynamic career path for outstanding researchers through fixed-term employment. The program provides an excellent opportunity to conduct innovative and cutting-edge research that enhances
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of machine learning and advanced molecular dynamics techniques for molecular simulations and to study Nucleic acids structures and their interactions. For more information, please visit https://nyuad.nyu.edu