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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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. Ca in Ol1), and the use of dihedral angles in solidified plutonic rocks. A key objective will be to improve current approaches to quantify those cooling rates by providing 1/ a finite difference model
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and localization of a potential fault using the Matched Field Processing (MFP) method, based on the reconstruction of a response model of the inspected structure from the modal parameters predicted by
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. -Strong expertise in genomic approaches (Cut&Tag, Cut&Run, ChIP-seq, Hi-C, or equivalent techniques) is essential. -Prior experience with the C. elegans model or oocyte manipulation. -Skills in
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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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The candidate will be required to carry out the following activities: -Development of analytical and theoretical models applied to wing profiles in free or forced motion, -Constrained optimisation of trajectories
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dispersal. To do so, she/he will use approaches from fluid mechanics. The postdoc will develop kinematic models of the splash in the limit where inertia dominates. She/he will use approaches from differential
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on the development of materials and processes and is divided into two axes. The first axis aims to improve the most promising state of the art cell materials by optimizing their compositions, microstructures and
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join the OH (Oxidation of Hydrocarbons) team and et will mainly perform combustion experiments on terpenes and model fuels in the laboratory ICARE-CNRS (Institute of Combustion, Aerothermics, Reactivity
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the measurements to be performed. - Determine the isotopic compositions (δ13C and δ18O) of ostracod larval capsules using IRMS. • Organize the dataset: - Verify and update the age models of the cores. - Integrate