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simulations of concentration-driven membrane permeation processes. This innovative integrated computational approach we aim to develop will be performed in tandem with a strong interaction with several
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for the numerical simulation of high-frequency acoustic and electromagnetic waves is a longstanding open problem in computational mathematics. These waves underpin a plethora of communication and imaging technologies
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to the production and exploitation of large simulation ensembles for the assimilation of paleoclimate data over long climate time scales. · Participate in the scientific exploitation of the simulations produced and
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dynamics processes into the IPSL Earth System model. · Participate in the scientific exploitation of simulations performed with ORCHIDEE v4. · Collaborate with ARCHIVES project partners to ensure coordinated
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to propose a number of probable scenarios that would reflect human organization in the future ultra-flexible factory. These scenarios aim to simulate future work situations in order to identify “what is
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in a highly competitive international context. The project aims to prototype energy efficient solutions that will enable the HL-LHC and SKA to reliably process and analyze the huge volumes of raw data
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analytical models and simulations to characterize the selective regimes, including polygenic selection, acting on genetic variants associated with complex diseases • Actively contribute to the writing
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/she will also take part to beam test campaigns (CERN, DESY, Mainz, FermiLab or BNL) and will be involved in simulation work (GEANT4) of exclusive processes, such as Deeply Virtual Compton Scattering
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terms of electrical performance and manufacturing complexity (number of manufacturing processes and dispersion tolerance). The best architectures will be designed (mask layout), in close collaboration
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project focuses on estimating dead fuel produced by forest dieback. In previous projects, a processing chain using Sentinel-2 data has already been developed (Mouret et al., 2024). The objective here is to