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theoretical and numerical models to describe, understand and exploit the physical phenomena associated with these dynamic interfaces. The successful candidate will work at the interface between theoretical
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scale and the sample scale. - Establish links between microstructure and mechanical properties, by combining experimental and numerical approaches, with the aim of optimizing material performance. Within
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research tasks, using both analytical and numerical methods, contributing to numerical validation of analytical predictions where relevant; (b) write up results for publication and present them at group
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model the candidate will perform a set of numerical models of an orogen testing the impact of the inherited extensional deformation on (i) the sediment routing systems and associated sediment volumes
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numerical simulations and analytical calculations, (iii) data analysis by programming, e.g. python and matlab, (iv) help and guide of Ph.D students in the team, (v) writing research reports, publishing
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numerous academic partners. Working conditions: - Easy access to the Cronenbourg campus by public transport - The CNRS may cover part of the cost of travel tickets - Meals are available at a university
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during data collection. Where to apply Website https://emploi.cnrs.fr/Offres/CDD/UMR7077-NADTIR-004/Default.aspx Requirements Research FieldNeurosciencesEducation LevelPhD or equivalent Research
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the CARNOT HyLBM project, which aims to develop advanced numerical models for hydrogen storage in nanostructured metal hydride reactors. The researcher will contribute to the development of advanced
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institution is its access to high-performance computing infrastructure, which is essential for large-scale numerical simulations. Researchers on the OPERA team regularly participate in collaborative projects
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Research Framework Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description Analytical and numerical modeling of one-dimensional