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translational medicine, improving diagnostics and healthcare solutions. For more information, please visit our page . Your role We are looking for a highly motivated PhD candidate interested in AI-based methods
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expertise. Your Responsibilities: Conduct research in the field of Multiscale Computational Methods for novel metamaterials as described above Develop theories, methods and computational tools Participate in
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periods, they must constantly understand their surroundings to make smart decisions and complete tasks, such as moving safely without collisions or handling objects. Recent methods for robotic situational
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established Systems Neuroimmunology Laboratory at LMU Munich (www.m-kaufmann.com ) is seeking a motivated and creative PhD candidate passionate about combining immunologic methods and advanced computational
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variability using dedicated tools (e.g., Dakota) and analyse uncertainty propagation on structural responses. Document methods and results through reports, figures, conference/journal publications, and
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computational mechanics, applied mathematics, physics, computer science, biomedical engineering or a related field Good knowledge of numerical methods and finite-element analysis Solid programming skills in C
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dataDesigning hierarchical graph‑based models to predict toxicity under uncertainty by linking molecular‑level and system‑level knowledgeAdvancing causal inference methods to predict transformation products under
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methods, e.g. Monte Carlo, Latin Hypercube sampling, to quantify uncertaintyIdentify influential parameters to support robust monitoring designUse two well-monitored landslides as benchmarksDevelop OED
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and evaluation of methods that leverage multimodal signals to improve the performance of multilingual models for low-resource languages, such as Luxembourgish. Particular emphasis will be placed
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DTU Tenure Track Researcher on Nanoreactors for Operando Visualizations of Nanoparticle Catalysis...
ultrasensitive and quantitative methods for investigating gas-surface interactions on nanoparticles in nanoliter reaction volumes. Relating the three-dimensional surface structure, dynamics and catalytic functions