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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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to unravel the atmospheric importance of this interfacial chemistry by means of (i) laboratory-based investigations, (ii) field observations and (iii) modelling. These activities will take place in the frame
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dispersal. To do so, she/he will use approaches from fluid mechanics. The postdoc will develop kinematic models of the splash in the limit where inertia dominates. She/he will use approaches from differential
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The candidate will be required to carry out the following activities: -Development of analytical and theoretical models applied to wing profiles in free or forced motion, -Constrained optimisation of trajectories
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and analyzed. The results will inform the development of new models that describe how seafloor spreading operates on short time scales. ⁃ Perform statistical analyses (assessing distributions
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of various existing datasets (picking files of local earthquakes and shots), recording of P-waves converted to S-waves on OBS, construction of an a priori model based on available tomographic grids and
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particular the hypothesis that the models applied to convert ALS measurements into above-ground biomass are transferable to all Central African forest landscapes, and the hypothesis that the BIOMASS satellite
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approaches to model polarization. The aim of the project is to develop methodological tools to characterize and exploit the polarization information extracted from bivariate signals (i.e. two-dimensional
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join the OH (Oxidation of Hydrocarbons) team and et will mainly perform combustion experiments on terpenes and model fuels in the laboratory ICARE-CNRS (Institute of Combustion, Aerothermics, Reactivity
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research and will contribute to the research work of LEMTA. The work will be of experimental and/or numerical nature, relying on state-of-the art laboratory equipment and numerical modelling resources