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of the project's pilot site; performance of eco-hydraulic characterization studies, i.e. identification of relevant plant species and parameterization of hydrodynamic effects of the site; Comparative
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streaming, modulating hydrodynamic drainage and confinement, and thus tuning the balance among dispersion, hydration, and electrostatic forces. By coupling rapid field actuation with force spectroscopy and
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our team on our website: https://cosmology.univie.ac.at . As a team, we understand the importance of a positive, inclusive, and respectful working environment, and we regularly exchange ideas about
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our team on our website: https://cosmology.univie.ac.at . As a team, we understand the importance of a positive, inclusive, and respectful working environment, and we regularly exchange ideas about
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floating wind energy with a special focus on nonlinear hydrodynamic fluid-structure interaction and the interaction between the hydrodynamic and rotor-based motion response. Computational Fluid Dynamics will
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this position will also possess: 4 months of research assistant experience. The candidate must have excellent knowledge of magneto-hydrodynamics and the elementary mathematical theory for these partial
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the MarUMinho – CTAC project aims at Observation and Monitoring, focusing on the analysis of coastal hydrodynamics and morphodynamics in the context of climate change and human activity, as well as Structural
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background in star and planet formation or small bodies of the solar system Experience in hydrodynamics and/or N-body simulations in the star and planet formation context Programming experience Proven
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: Magnetohydrodynamics and the mathematical theory of plasmas. Collisional kinetic models and their hydrodynamic limits. Dispersive phenomena in kinetic theory. Quantum gases. Applicants must hold a PhD degree in
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applications for fully-funded postdoctoral research associate positions. SITE is highly interdisciplinary and aims to develop novel enabling technology on hydrodynamic stability analysis that has applications in