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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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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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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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, manufactured using a hybrid PIP (Polymer Impregnation & Pyrolysis) - CVI (Chemical Vapor Deposition) process from a ceramic fiber preform. This process requires optimization, whereby the structure of the porous
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in process engineering, particularly membrane separation, and in numerical flow simulation. Website for additional job details https://emploi.cnrs.fr/Offres/CDD/UMR7274-SABROD-003/Default.aspx Work
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fluxes not represented by ISBA, and hence evaluate the potential effect of those on the carbon accumulation processes and CO2 emissions. - 1D ISBA simulations on the Abisko, Churchill and Zackenberg sites
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modeling - Coalescent modeling - Coding - Tests with simulations - Data analyses - Paper writing - Presenting results -Integration within the BioDiv team at IBENS - Availability of work station, computer
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TCAD (Technology Computer Aided Design) simulation desirable. - Experience in power electronics desirable Website for additional job details https://emploi.cnrs.fr/Offres/CDD/UPR8001-DAVTRE-003
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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