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Infrastructure? No Offer Description Area of research: PHD Thesis Job description:PhD Position – Statistical Mechanics of Noisy Quantum Devices Programmable digital quantum devices are redefining our understanding
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structures but also free energies. The work sits at the interface of statistical mechanics, molecular simulation, and deep generative modeling, and is embedded in SIMPLAIX, a research initiative on multiscale
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mechanics, permeability, responsiveness, and biointerface properties. By integrating enzymatic reaction networks, metabolic modules, and homeostatic feedback systems, we will establish synthetic cross-feeding
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. The tube wall’s viscoelasticity reorganises in response – continually learning its future response. You will develop a theory describing the physical mechanisms of Physarum’s learning mechanics and thereby
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of Pharmacology focuses on deciphering the molecular mechanisms that control intercellular communication, inflammation and regeneration in epithelial tissues (https://www.uni-marburg.de/de/fb20/bereiche/bpc
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integrating laboratory experiments, field observations, and theoretical modelling within an international, multidisciplinary research team. The successful candidate will investigate how the mechanical
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staff position within a Research Infrastructure? No Offer Description Work group: Mechanisms of Sustainable Electrocatalysis Area of research: PHD Thesis Job description: Reference No. CE 2026/12
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that support effective enforcement in complex platform ecosystems. DC15: The Legitimacy Paradox: Anti-Capture Mechanisms in Adaptive Regulation Host university: Technical University of Munich, Germany
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), we work in a dynamic and international team of over one hundred materials scientists, chemists, physicists, mechanical engineers and technical staff on the development of advanced energy converters and
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Deutsches Zentrum für Neurodegenerative Erkrankungen | Bonn, Nordrhein Westfalen | Germany | about 2 months ago
influence brain clearance and disease progression. Our research combines animal models, advanced in vivo imaging, molecular biology, and human tissue analyses to better understand mechanisms of brain ageing