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the University of Maine) with added electrolyser, ancillary plant and hydrogen storage tanks. FOW foundations with hydrogen storage and subject to wind turbine and hydrodynamic loads will be analysed in terms
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been modelled by Starling's principle, which is based on the combined effect of hydrodynamic and osmotic flows. Revised to include lymphatic recirculation, Starling's principle remains difficult
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chemistries (pH, ionic strength, composition). Perform column transport experiments to assess polymer mobility and adsorption under hydrodynamic flow. Complement experiments with in-situ surface measurements
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multiple frequent commuter train lines. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre/UMR8089-ANAMAI-003/Candidater.aspx Requirements Research FieldPhysicsEducation LevelPhD or equivalent
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. For Dr. Haehl’s project desirable experience includes holography, conformal field theory, quantum chaos, effective field theory and/or hydrodynamics. For Dr. Zadeh’s project, background in conformal field
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computational and experimental; we work on exciting problems in diverse areas such as bio-fluid interactions, signatures, wave energy, advanced materials, complex hydrodynamics and hydroacoustics, data
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geophysics, hydrodynamics, environmental isotopes, and tropical hydrology will be considered an asset. The successful candidate will be able to analyze and interpret multi-source datasets, design robust
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of Antwerp. See also: https://remotesensing.vito.be/news/sspirit-tackling-plastic-pollution The main task of the KU Leuven PhD project will be the further development and validation of a two versatile
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, turbulence, and hydrodynamic instabilities. Plastic pollution is a major threat to riverine and marine ecosystems. However, only a small fraction of plastic particles entering the oceans remains at the surface
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the specific aspects of each operation and theorizing the limiting physico-chemical processes (thermodynamics, hydrodynamics, material and heat transfers, etc.), in order to produce predictive models that can be