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National Aeronautics and Space Administration (NASA) | Greenbelt, Maryland | United States | 8 days ago
critical constraints on physical models of SEEs. This opportunity has a particular focus on data from the Hinode EUV Imaging Spectrometer: identifying key datasets from the 18-year mission; performing plasma
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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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sustainable, electrified alternative to the Haber-Bosch process. You will design hybrid catalyst systems (heterogeneous and homogeneous), engineer innovative electrochemical reactors, and pioneer radical
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created in heavy-ion collisions through the study of energy correlators inside jets. Candidate profile: Applicants should hold a PhD in theoretical high-energy or nuclear physics by the start of
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physics, quantum information and interaction between light and matter, 7) Plasma, accelerator physics, kinetic turbulence, 8) New areas of theoretical physics or related interdisciplinary fields. For more
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participating in funding applications and project reporting. Applicants should hold, or be close to completion of, a PhD/DPhil in physics or a related discipline, ideally including plasma-based acceleration; have
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. Applicants should hold, or be close to completion of, a PhD/DPhil in physics or a related discipline, ideally including plasma-based acceleration; have experience, knowledge, and interest in advanced
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Plasma Physics Lab and in the Physics, Geosciences, and Mechanical and Aerospace Engineering Departments, and at the nearby Institute for Advanced Study. The expected start date is September 1, 2026