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Inria, the French national research institute for the digital sciences | Pau, Aquitaine | France | 1 day ago
subsurface processes. The program will be divided into two main phases which corresponds to the modeling of the decoupled elastic waves, and the quantitative inversion. All software development and numerical
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using advanced statistical methods. The goal is to improve our understanding of wave-driven turbulence processes, which are crucial for accurate climate modeling The Institute of Environmental Geosciences
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transient motions at the top of Earth's core. The benchmark will be the subject of an international call to candidate models. It will lead to an evaluation of the various methods when applied to synthetic
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state of art of frequency-dependent model of winding in electrical machines • task 2: the aim of the second task is to propose simplified models, derived from the detailed models typically used
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developing research work on self-assembled metamaterials for the past ten years. Metamaterials are artificial materials whose structure is designed to induce specific properties of wave propagation, possibly
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interactions), (vi) Uncertainty analysis (Monte Carlo simulations, surrogate modeling), (vii) Risk analysis. The position contributes to the ANR project IM-SURF (Impact and Mitigation of SURFace Seismic Waves
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to propose an electronic wave packet that significantly increases the quantum yield of the photo-conversion reaction. - simulation of the quantum dynamics of the photochemical reaction induced
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operational condition, in collaboration between LMA researchers from the “Waves and Imaging” and “Sound” teams, and the LISM laboratory at CEA Cadarache. This research project is a continuation of previous