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particular in terms of seismic risks and underwater noise pollution, by relying on numerical modeling of seismo-acoustic wave propagation generated by underwater explosions and on seismic and acoustic data
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Inria, the French national research institute for the digital sciences | Rennes, Bretagne | France | about 2 months ago
position on ocean modelling within the ERC Stuod (Stochastic transport in ocean dynamics). Odyssey (for Ocean DYnamicS obSErvation analYsis) is a recently created team involving researchers from Inria
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theoretical aspects of wave propagation and complex systems. Experience with optical experiments, numerical simulations, or computational modeling. Programming and simulation skills in MATLAB, Python, COMSOL
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interactions; stellar oscillations and tidal interactions; modelling or observations of electromagnetic counterparts and tidal disruption events; gravitational-wave astrophysics. Depending on the candidate’s
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project. The position will provide core expertise in physics-based environmental and ocean modeling, with emphasis on numerical simulation and prediction of ocean conditions such as currents, tides, waves
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of cosmology and theories of gravity. Possible research directions include: modified theories of gravity; black holes and compact objects; gravitational waves; dark matter models; strong-field tests of general
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-doctoral researcher in the area of gravitational wave physics to join and extend our work in gravitational wave data analysis and our contribution to the LIGO Scientific Collaboration and Einstein Telescope
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neighbouring wind farms. This challenge is further complicated at the multi-gigawatt scale by a newly emerging phenomenon: the ability of these massive farms to generate atmospheric gravity waves, leading
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are seeking a highly motivated postdoctoral researcher to investigate a new link between acoustic waves, spin dynamics, and magnetic resonance relaxation. The project combines fundamental MR physics with
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processing. 3, Demonstrated expertise in the modelling, design, and optimization of acoustic transducers and metamaterials, with a solid understanding of acoustic wave physics and numerical simulation methods