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for learning-on-the-job). A M.Sc. degree with a focus in fluid mechanics and heat transfer (e.g., aerospace engineering, mechanical engineering, or applied physics); An aptitude for working in a team and
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order and chaos and, thereby, different time scales of predictability. Famous examples include various states in the transition to turbulent fluid flow or metastable chemical configurations. However, such
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, different time scales of predictability. Famous examples include various states in the transition to turbulent fluid flow or metastable chemical configurations. However, such transient stochastic phenomena
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fullfil all requirements, please still apply (there is room for learning-on-the-job). A doctorate (PhD degree) with focus on experimental fluid mechanics (e.g., aerospace engineering, mechanical engineering
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reduction, POD, autoencoders, neural networks, low-rank methods) is necessary. Good knowledge of fluid dynamics and free-surface flows is required. Candidates should have experience with scientific
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prototypes currently being developed within the consortium. In close collaboration with senior lab members, you will use our multi-scale computational fluid-structure interaction framework that describes
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. This presents an opportunity to push the boundaries of fundamental fluid and atmospheric dynamics, enhance wind farm efficiency, and deepen our understanding of their interaction with the atmosphere. Join us in
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tube. An important advantage of Coriolis mass flow sensors over other types of flow sensors is that they provide a direct measure for the mass flow, independent of fluid parameters like density
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production, energy storage and waste storage, in the areas of rock mechanics, (reactive) fluid flow and (bio)geochemistry. This area of research is part of a broader palette of expertise in the area of Earth
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myriad of life science applications, from bioanalysis and biosynthesis to organ-on-a-chip and in vivo fluid dynamics. Whether you work on the fundamental study of flows and transport in LoC systems