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the theoretical analysis of nanoscale and quantum devices, at the interface of quantum transport, quantum optics, and thermodynamics. The successful candidate will conduct research in close
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. Who we are looking for We seek a highly motivated and skilled candidate with a strong interest in the theoretical analysis of nanoscale and quantum devices, at the interface of quantum transport
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fluid dynamics and vascular modeling in microenvironments Skills in data analysis and image processing (e.g., Python, R, ImageJ) Ability to mentor junior researchers and contribute to team leadership What
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finite element models using LS-DYNA, OpenRadioss, or equivalent solvers to simulate skull fracture mechanics during impact scenarios Perform parametric studies for population-level analysis Develop
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, or equivalent solvers to simulate skull fracture mechanics during impact scenarios Perform parametric studies for population-level analysis Develop protocols for various fall scenarios and demographic parameters
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fluids, flow-induced pattern formation in both simple and complex flows (e.g. flow instabilities, product defects), multiscale analysis, and the application of machine learning techniques. About the
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biomass characterization, biomaterial characterization and application. Experience in glycomic analysis is highly recommended. Laboratory experience in biomass transformation in materials and water based