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pioneering research in experimental and computational fluid mechanics, hydrology, and earth-surface dynamics. For over 80 years, our innovative and adaptable facilities have attracted trailblazers, problem
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thermal-fluid-dynamics framework to understand the effect of processing parameters on thermos-capillary ‘keyhole’ evolution in multi-component metallic substrates. This will involve running simulations
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Technology (NTNU) for general criteria for the position. Preferred selection criteria Experience with state-of-the-art experimental fluid mechanics measurements (e.g., high-speed imaging, hot-wire, particle
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strong background in fluid dynamics is essential, and expertise in data-driven fluid mechanics or experimental fluid mechanics is especially welcome. Strong skills in numerical simulation, scientific
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] * Background of the recruitment and description of the project The aim of this laboratory is to deepen academic understanding and develop innovative technologies by focusing on thermal fluid dynamics in vacuum
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the performance of floating structures. Analyze hydrodynamic behavior of floating breakwaters under varied sea conditions. 2. CFD and Finite Element Modeling Perform Computational Fluid Dynamics (CFD) simulations
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given to those with relevant work experience and training. Lectures with expertise in one of the fields of mechanical engineering, such as thermos-fluids, solid mechanics, material sciences, experimental
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natural silica-rich rocks The ETH Zurich Geothermal Energy & Geofluids (GEG.ethz.ch) Group in the Department of Earth and Planetary Sciences investigates subsurface reactive fluid and geothermal energy
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Laboratory facilities. Supervise, train, and assist PhD students and postdoctoral researchers on experimental methods. Teach part of a course in fundamental fluid mechanics. Contribute to laboratory health and
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physics, condensed matter, and quantum systems. The lab is internationally renowned for its experimental and theoretical work on complex systems, particularly in the areas of geophysical fluid dynamics