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that have readily available atmospheric forcing, and fluxes of CO2 and CH4 needed to test the model. These sites are also studied by the othe Work Packages of the project. It will then be applied regionaly
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. This data is crucial for improving the numerical models aimed at simulating crystal morphologies and interfacial dynamics, as well as gaining a better understanding of the solidification mechanisms. Where
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temperature conditions. The post-doctoral researcher (M/F) is expected to make an original contribution to the study of terrestrial planetary interiors through a combination of experiments and modeling
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. * Design numerical simulations of 2-D dike propagation coupling viscous flow and fracturing of elastic host rocks, building on existing frameworks for modeling hydrofractures. * Implement boundary conditions
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data from numerical geodynamo simulations, and to an intercomparison of the several candidate models in an application to the geomagnetic field as seen from satellite observations. These evaluations will
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The postdoctoral fellow will participate in the PostGenAI@Paris AI Cluster (ANR) project at Sorbonne University, and more specifically in the "AI-Augmented Multiscale Modeling for Energy Storage" sub-project, whose
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to unravel the atmospheric importance of this interfacial chemistry by means of (i) laboratory-based investigations, (ii) field observations and (iii) modelling. These activities will take place in the frame
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and implemented in Fenics to: - Identify the mechanical properties of collagen hydrogels, depending on their manufacturing conditions, based on experimental data. - Improve these models to include
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molecular dynamics simulations with LAMMPS, and data curation. Scientific context: Our current understanding of polymer viscoelasticity is founded on single-chain models [2]. Such models draw on the fact
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or liquid chromatography, mass spectrometry, optical diagnostics, lasers, IR-UV-Vis spectrometry - Measurements in atmospheric simulation chambers, in reactors coupled with laser-induced fluorescence