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mechanics reaction diffusion equations in the life sciences partial differential equations under uncertainties data driven methods for differential equations We expect the initiation and development
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Max Planck Institute for Chemical Energy Conversion, Mülheim an der Ruhr | M lheim an der Ruhr, Nordrhein Westfalen | Germany | 2 months ago
. The position is available immediately, the starting date is flexible till January 2026. The doctoral researcher will work on a 3-year-doctoral program. The successful candidate will be supervised by Prof. Dr
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mechanisms. Job description: • Research and development in the field of AI-supported analysis of biomedical data • Implementation and evaluation of methods for AI validation and model interpretability
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the fundamental mechanisms of innate immune activation that play a crucial role in autoinflammatory, rheumatologic and chronic inflammatory diseases. In this role you will be supporting the histology experiments
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computational approaches, including artificial intelligence (AI), to unravel the mechanisms driving neuroimmunologic diseases. Your responsibilities: Plan and perform innovative large-scale experiments bridging
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science. A wide range of quantum theoretical methods shall be employed. A solid background in quantum mechanics and programming skills are prerequisite for this position, as is the readiness to learn and to
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be part of the department »System Validation Mechanical Drive Train« at our site in Bremerhaven. At present, our team consists of eleven employees and several students. Our core activities are
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interdisciplinary team bridging molecu-lar microbiology, ecology and infection research with the focus to understand mechanisms of host-microbe and microbe-microbe interaction in the gut. Our lab has a broad
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theoretical methods shall be employed. A solid background in quantum mechanics and programming skills are prerequisite for this position, as is the readiness to learn and to apply new methods. For an initial
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Your Job: Neural interfaces are electronic devices designed to interact with the nervous system, capturing and controlling neural activity to map neural networks, understanding the mechanisms behind