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the magnetospheric and planetary orbiters of BepiColombo, and comparing with numerical simulations, the project aims to provide completely new and critical insights into Mercury's magnetospheric ion dynamics. 1
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investigated. The results will be compared to those obtained from water channel experiments and numerical simulations carried out by other participants in this project. This work is part of a collaboration
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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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matter gravity simulators, enabling the identification of exotic properties of relativistic materials. Use of various theoretical methods to study the effects of field theory properties in curved spacetime
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26 Jan 2026 Job Information Organisation/Company CNRS Department Modèles et simulations pour l'Architecture et le Patrimoine Research Field Geography Architecture Sociology Researcher Profile First
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predictions against simulated datasets, forecast expected constraints from Euclid and SKAO, and ultimately analyze the Euclid spectroscopic galaxy sample in its second data release. Collaboration Framework and
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: Develop data-driven numerical models (opinion models, norm dynamics, multi-agent systems). Network Science: Study social and temporal interaction networks using network physics tools. Simulation: Conduct
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the performance and sensitivity of a future space mission for cosmology. The candidate will be required to simulate the performance of a specific instrument using Python code in order to predict the sensitivity
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Numerical simulations Analysis of experimental data Laboratoire Jean Perrin Theory group Where to apply Website https://emploi.cnrs.fr/Candidat/Offre/UMR8237-RAPVOI-006/Candidater.aspx Requirements Research
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collaborators. The activities will include: • Electromagnetic modeling and numerical simulations (e.g., FDTD, FEM) • Design of metasurface architectures based on dielectric materials available at CRHEA