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breakwaters under varied sea conditions. 2. CFD and Finite Element Modeling Perform Computational Fluid Dynamics (CFD) simulations to optimize the design and performance of floating breakwaters. Develop finite
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measures. Knowledge and prediction of physical principles, laws, their interrelationships, and applications to understanding fluid, material, and atmospheric dynamics, and mechanical, electrical, atomic and
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at the Assistant Professor level, with an anticipated start date of August 2026. We seek dynamic educators prepared to teach across the full range of Civil, Environmental, and Nuclear Engineering. The ideal
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at the Assistant Professor level, with an anticipated start date of August 2026. We seek dynamic educators prepared to teach across the full range of Civil, Environmental, and Nuclear Engineering. The ideal
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to support Oregon State University’s marine research activities. This position works as part of the Small Boat Program (SBP) within the Office of Marine Operations (OMO) and provides essential field-based
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of fluids and materials under extreme conditions, advanced propulsion systems and combustion concepts, material response to dynamic loading and hypervelocity impacts, high-speed aerodynamics, and/or
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computational and experimental fluid dynamics. Academic units affiliated with the department include the Wind Energy Center, Energy Transition Institute, Marieb Center for Nursing and Engineering Innovation, I
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physics, multiscale modeling, and uncertainty quantification. The Multiscale Modeling of Fluid Materials group at the Technical University of Munich is looking for talented and ambitious scientists
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, their interrelationships, and applications to understanding fluid, material, and atmospheric dynamics, and mechanical, electrical, atomic and sub-atomic structures and processes. Competent in archiving, retrieving and
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, particularly turbulence in the boundary layer; developing new high-speed measurement techniques, particularly using optical diagnostics methods; augmenting experimental data with Computational Fluid Dynamics