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with optical simulations and applied to ultra-thin silicon and GaAs solar cells. The goal is to demonstrate breakthrough performance using original designs and cost-effective manufacturing processes
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system housing the two arms of the PET-SCAN system - Develop a simulation tool to optimize the prototype structure - Develop software tools for data acquisition and processing This work is being carried
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- Processing of data measuring facial elasticity in patients - Processing of data capturing 3D surfaces based on facial expressions - Numerical simulations (Finite Element) of bone repositioning - Quantification
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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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the Paris region specializing in environmental and climate sciences at the Institut Pierre-Simon Laplace (IPSL) (https://www.ipsl.fr ). The LOCEAN team's work focuses on studying the physical processes
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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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/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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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