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. The postdoc will be responsible for developing and validating DFT models to simulate the atomic-scale structure, stability, and reactivity of reconstructed ND surfaces, including hybrid sp²/sp³ systems and
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, security) into climate modelling, and assessing the impact of such SAI scenarios on the climate system. These scenarios will be implemented in the simulations via the controller mentioned above. The thesis
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, visit https://www.biocean5d.org/ . The applicants will work on close collaboration with Jose M. Montoya, from CNRS. - Developing analytical theory and/or simulation models on the relative importance
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tempering [1]. The enrichment step remains to be studied specifically Objectives of the postdoc will be to study, by modeling and advanced characterization techniques, carburizing of a high-alloyed tool steel
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plausible deployment pathways. Numerical simulations will first be conducted in isolation, focusing on OAE alone, and will then be extended (in collaboration with other PhD students and postdocs) to combined
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probes and in combination. More specifically, the project requires developing the SBI framework including simulations as forward models of observables, performing inference on synthetic datasets and
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simulation software modelling the dynamic behavior of dislocations (DDD) in 3 dimensions, coupled with a spectral solver based on FFT. The procedures must analyze the simulated 3D microstructures to compare
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) to study yielding in cellular materials, specifically in emulsions. The postdoc (M/F) will analyze experimental data and compare to simulations that they will carry out. - Numerically study a vertex model
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on multiscale study of hydrogen embrittlement in steels. The primary mission of the postdoc is to support experimental efforts as well as large scale simulations by means atomistic simulations. Designing and
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. The postdoc position is based at IRPHE Marseille, with several planned visits to Paris and Lyon. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre/UMR7342-STELED-006/Candidater.aspx Requirements