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Max Planck Institute for Physics, Garching | Garching an der Alz, Bayern | Germany | about 1 month ago
Job Offer from September 18, 2025 The Max Planck Institute for Physics is engaged in fundamental research in particle and astroparticle physics from both experimental and theoretical perspectives
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innate immune responses. Our group uses a wide range of experimental methods, including multiparameter flow cytometry, single cell gene expression analysis and in vitro culture systems, including 3D human
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Helmholtz-Zentrum Dresden-Rossendorf - HZDR - Helmholtz Association | Dresden, Sachsen | Germany | 4 days ago
mechanical properties # Characterize change of inner structure upon mechanical deformations including geometric curvature # Interact with theory teams to describe impact of geometric curvature and strain
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Postdoc (f/m/d) in Irradiation Tolerance of Additive Manufactured Ferritic/Martensitic Steels for...
(Fe) and helium (He) ions are employed to simulate fusion-relevant damage mechanisms. The objective is to experimentally replicate effects such as hardening, embrittlement, and swelling, and to clarify
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chemistry using advanced analytical techniques. The carbon will then be dispersed in elastomers and compared to industrial carbon black references. Dynamical, mechanical, and electrical testing
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role of chromatin control mechanisms during viral latency and virus-induced tumorigenesis. We are particularly interested in fundamental principles that allow DNA viruses to disrupt, evade or exploit
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partner from data sciences provides data management and AI based Image analysis, an internal simulations group working on quantitative models to reproduce and predict experimental data, and an internal
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Postdoctoral Researcher (m/f/d) to study the molecular mechanisms of somatic sensation. Our goal is to understand how mechanical stimuli, such as touch or pressure, are detected by nerve cells and converted
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conducts internationally recognized, high-impact research on the biology of aging at the molecular, cellular, and systems levels. Scientists from around 40 countries investigate the mechanisms of aging
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their acoustic and thermal properties Developing and optimizing numerical models to simulate the performance of thermoacoustic microdevices Designing, fabricating, and experimentally testing prototype