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: the process modelling and development of CO2 hydrogenation to methyl formate, and the reaction engineering and kinetic analysis of alkylamine synthesis. Your responsibilities include: Reaction optimization
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: the process modelling and development of CO2 hydrogenation to methyl formate, and the reaction engineering and kinetic analysis of alkylamine synthesis. Your responsibilities include: Reaction optimization
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complex (multicomponent) matrices (foods, digestive products) and the host (cells, animals and humans) in synergy with the expertise available within the department; develop holistic models to simulate and
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approximately 50% clean room work and process development, and 50% optical simulations (Lumerical, mode solvers, FDTD, inverse design, …) and optical experiments. The focus will be on fabricating novel devices
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University and imec. The estimated breakdown of the research activity is approximately 50% clean room work and process development, and 50% optical simulations (Lumerical, mode solvers, FDTD, inverse design
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products) and the host (cells, animals and humans) in synergy with the expertise available within the department; develop holistic models to simulate and steer these interactions; combine our expertise
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background in nanomagnetism, spintronics, or magnetic materials Experience with NV microscopy or other advanced magnetic imaging techniques Background in micromagnetic simulations or numerical modelling