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https://www.ntnu.edu/studies/phiv, see Section 6-1 of the PhD regulations for more information. You must have a relevant Master's degree in marine hydrodynamics, aerodynamics, fluid mechanics
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become part of a laboratory that covers a wide range of fields, from statistical physics to hydrodynamic turbulence, including mathematical physics and signal processing, as well as soft and condensed
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hydrodynamic and mechanical stimulation using advanced microscopy; - Developing multiphysics models of fluid transport and tissue deformation (COMSOL Multiphysics); - Validating the platform using patient
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microorganisms, including bacteria, sperm, and, more recently, synthetic swimmers. The interplay between the properties of individual swimmers and the complexity of the associated hydrodynamic flows gives rise
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loads, resulting in highly nonlinear coupled hydrodynamic and structural behaviors. High-fidelity CFD-FEA based FSI simulations provide valuable insight but remain computationally expensive for large
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, effluent composition, hydrodynamic conditions) on treatment performance and gas production; • Qualitatively and quantitatively characterize the gases produced during electrolysis; • Establish correlations
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-relevant geometries and conditions. You will receive extensive training in (i) theoretical knowledge of interfacial instabilities, capillary phenomena, scaling theories, hydrodynamic flow in disordered media
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marine datasets in the Baltic Sea region, including in situ observations, remote sensing products, and hydrodynamic model outputs. These datasets can be unified through a geoid-based vertical reference
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-fidelity numerical models to be analysed under regular and irregular sea states (e.g., coupled hydrodynamic–structural models and/or FEM workflows). Develop surrogate models representing the coupled dynamic
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The successful candidate will join the Climate Physics team at ENS de Lyon (https://climatephysics-ensl.fr/ ), which currently consists of 5 permanent researchers, 7 PhD students and 2 postdoctoral researchers. We