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highly motivated post-doc to finalize a research project on the molecular mechanisms of gene control in bacteria. The person to be recruited will study the transcriptional control of gene expression in
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, the primary unit of chromatin, using classical all-atom molecular dynamics simulations. The nucleosome is composed of a double-stranded DNA fragment wrapped around a protein core consisting of eight histones
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(iv) writing reports and scientific articles. This work will be carried out in close collaboration with researchers from the Institute of Molecular Sciences in Bordeaux and the Institute of Chemical
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entanglement. - Theoretical and Analytical Studies: Conduct theoretical and numerical analyses of superradiant molecular ensemble models, with thorough documentation of processes and results. - Simulation Code
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the molecular mechanisms underlying attraction and recognition between symbiotic partners. The establishment of microalgae culture models in recent years has led to advances in fundamental and applied research
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Postdoctoral researcher (M/F), synthesis of crystal phase heterostructures by Molecular Beam Epitaxy
optimize the growth of GaAs nanowires integrating crystal-phase heterostructures by molecular beam epitaxy (MBE). Contribute to scientific writing, presentation of results, and promotion of the project's
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combine density functional theory (DFT), molecular simulations, and machine-learning force field (ML-FF) development to uncover the factors controlling NHC–surface interactions and to model realistic
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of the circulation of infectious agents in populations of marine vertebrates in the Southern Territories. The main models considered are seabirds (albatrosses, penguins, petrels, wrasses) and marine mammals (elephant
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responsible for a research project aimed at understanding how macrophages and their tissue niches influence homeostasis and tissue repair in vivo, using original and innovative models. The position is based
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communication. They will implement cellular models and cellular/molecular biology approaches to link metabolic regulation with subcellular organization. The LPENS laboratory offers a unique interdisciplinary