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have a strong background in geophysics and expertise in at least one of three areas: 1. Seismology, particularly ambient noise techniques and seismic tomography 2. Potential field methods, using gravity
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National Aeronautics and Space Administration (NASA) | Greenbelt, Maryland | United States | 3 months ago
across different platforms; (4) cloud-wave coupling at turbulence to gravity wave scales, from planetary boundary layer to the mesosphere and above. Field of Science: Earth Science Advisors: Jie Gong
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and other stars. The project applies state-of-the-art computational physics methods, particularly Smoothed Particle Hydrodynamics (SPH) with self-gravity, shocks, strength and geological equations
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stars. The project applies state-of-the-art computational physics methods, particularly Smoothed Particle Hydrodynamics (SPH) with self-gravity, shocks, strength and geological equations of state
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coalescence events and determining their mass/spin spectrum, and for primordial black holes and axion-like particles as candidates for dark matter. We perform tests of exotic models for Gravity beyond General
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the overlap of quantum science and gravity, Bose Einstein condensates, quantum information and 3D-printed quantum technologies. The group is part of the Midlands Ultracold Atom Research Centre (MUARC) and the
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The position is a part of SFI Seaweed - Centre of gravity for industrial seaweed research and innovation. SFI Seaweed is a Centre for Research-based Innovation funded mainly by the Research Council of Norway and
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projects, a strong background in group theory, quantum field theory (QFT), or gravity, as well as familiarity with relevant physics software, is recommended. -For statistical-inference-focused or experiment
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applies state-of-the-art computational physics methods, particularly Smoothed Particle Hydrodynamics (SPH) with self-gravity, shocks, strength and geological equations of state, to simulate hypothesized
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coalescence events and determining their mass/spin spectrum, and for primordial black holes and axion-like particles as candidates for dark matter. We perform tests of exotic models for Gravity beyond General