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of mechanical engineering. Principal activities · Development of numerical tools for simulation of flanging process, especially for high strength steel. The developed models aim to feasibility analysis using
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, underwater gliders, micro-AUVs, and ship-based sampling), remote sensing products, and high-resolution numerical models. The work will improve understanding of coastal ecosystem variability, support better
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, and/or multiphysics modelling • Mathematics & AI: Numerical analysis, inverse problems, neural networks, scientific machine learning • Programming: Python (scientific computing, ML), preferably C
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Initial in vitro characterization of radioligands and assistance with further preclinical in vitro and in vivo experiments Analysis of experimental data and communication of results in work reports and
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Associate Researcher whose research will focus on space physics. The research includes the following activities: Numerical modeling of the dynamic variability of radiation belt fluxes Data analysis from
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the analysis of linked health registries though the development, implementation and application of methods for causal inference in time-to-event outcomes. For more information and how to apply: https
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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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investigations of the Martian atmosphere and surface using data from the Emirates Mars Mission (EMM) “Hope” probe. The position contributes to ongoing research, data analysis, simulation efforts, and dissemination
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design. A helium plasma discharge source and a liquid nitrogen-cooled CCD, both already available, will be used. Analysis of experimental data and comparison with numerical simulation results will be
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alternative stable states (bare tidal flats versus developing mangrove forests). The project combines controlled flume experiments, geospatial data analysis and numerical modelling. Experimental work will be