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lakes and their watershed at centennial to millennial time scales. In particular, we are interested in how changes in climate and land use affect the C cycling in watersheds, and through changes in
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the development of efficient algorithms and codes for multilinear algebra, with a particular focus on the use of innovative parallel programming models and tools. In the context of this task and as part of the Exa
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therapeutic strategies. - DNA-protéines complexes modeling - Molecular dynamics simulations of biomolecules - Enhanced sampling techniques (Steered MD, Gaussian Accelerated MD) - HPC resources use - Scientific
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study of interacting electronic models coupled to photons, aiming to both probe and modify electronic properties. Another exciting avenue is the use of cavity coupling to induce effective electron
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Shell Model with Continuum and its extensions to construct high-fidelity microscopic optical potentials, designed for use in few-body reaction formalisms, in particular Faddeev-type calculations targeting
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renewable energy, the challenge lies in efficiently converting it for use. Energy harvesting conversion is thus crucial for this transition, and advances in materials science, particularly ferroelectric
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characterization of C and SiC fibers - Training on bench use (in particular heating techniques by Joule effect, laser diffraction, infrared imaging, pyrometry, preparation of micrometric samples, ...) - Technical
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elucidating the molecular and cellular mechanisms of the late phase of long-term potentiation (LTP), a key process in learning and memory. The project is based on the development and use of an innovative
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of structure, dynamics and function. The groups use approaches from cell biology and biochemistry in combination with structural biology. The MMSB hosts 11 different research groups, totalling more than 90
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for the conversion of CO2 into hydrocarbons. The reaction mechanisms will be studied using in situ surface techniques, particularly IR spectroscopy. The catalysts will then be characterized after use by advanced