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Field
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Diogo Arsénio on subjects including: Magnetohydrodynamics and the mathematical theory of plasmas. Collisional kinetic models and their hydrodynamic limits. Dispersive phenomena in kinetic theory. Quantum
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kinetic models and their hydrodynamic limits. Dispersive phenomena in kinetic theory. Quantum gases. Applicants must hold a PhD degree in mathematics, physics or a related field. We seek candidates with
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mathematical and computational models of the coupled thermo-fluid dynamics of wind and surface-wave driven shelf-water polynyas in polar oceans. As magnets for biological activity, centers for deep salty water
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hydrodynamic models to simulate waves and currents at the field site. Analyze and interpret experimental and numerical data, and disseminate findings through technical reports, conference presentations, and peer
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hydrodynamic modeling of mussel bed sites with varying flow/suspended sediment concentrations 20% - Research proposal writing for extension of research as well as report/article writing for research
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kinetic models and their hydrodynamic limits. Dispersive phenomena in kinetic theory. Quantum gases. Applicants must hold a PhD degree in mathematics, physics or a related field. We seek candidates with
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simulation and flood inundation modeling. River basin planning and operations modeling, including reservoir simulation and optimization. Hydrodynamic modeling of water temperature and quality constituents
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. THE DEPARTMENT The department of Estuarine and Delta Systems (EDS) of NIOZ is based in Yerseke. We study how the interplay between biota, hydrodynamics, sediment dynamics and biochemistry shapes the estuarine
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ultrafast processes involved in LWFA. You will use the PIC code Smilei to model short time-scale phenomena (plasma ionization, initial heating, and LWFA dynamics within the formed channel). You will also
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are expected to have a strong background in marine hydrodynamics or related fields, along with substantial experience in code development and numerical modeling. The role requires a proactive approach