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high spatial resolution (dx = 2 km for the ocean, dx = 6 km for the atmosphere and the waves) that will cover the Mozambique Channel and will be forced by lateral boundary conditions generated by basin
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) to reconstruct the sea surface height signal associated with different dynamic features: internal tide waves and mesoscale dynamics. The project is part of the Adopt A Crossover consortium, with the lead
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University of New Hampshire – Main Campus | New Boston, New Hampshire | United States | about 2 hours ago
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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for a millimetre-wave metasurface project using nonlinear circuits such as diodes. This position may require travel to these partner organizations. Duration: Fixed term until March 2028 (possible
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of the proposal. This includes the complete modeling and simulation of the response of the detectors to gravitational waves of different sources, generating realistic sensitivity calculations and exploring
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Matter searches, gamma-ray spectroscopy, gravitational waves) The center currently consists of eight faculty members and more than 25 researchers and PhD students. The Center possesses the unique
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for a millimetre-wave metasurface project using nonlinear circuits such as diodes. This position may require travel to these partner organizations. To be considered, the candidate is expected to have
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its features, it enables joint fits of heterogeneous data sets e.g. from different event types, from differents gamma-ray instruments. Some work have also demonstrated that multi-wavelength (from
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full-wave simulations and characterize the relevant metamaterial structures. Extend existing analytical tools and numerical models. Prepare and publish scientific articles and reports and co-supervise
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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