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. Using all-atom molecular dynamics simulations and enhanced sampling techniques, the project will investigate how S-glutathionylation modulates nucleosome structure and dynamics, alone and in combination
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the Institute of Planetology and Astrophysics of Grenoble (IPAG, France). The successful candidate will join the group led by Benoît Cerutti to work on ab-initio plasma simulations of relativistic
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calorimeter for the future FCC-ee ALLEGRO detector, with simulation studies and hands-on work on the early prototypes of this detector. Depending on time and interest, the candidate could also contribute
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millifluidic environments by investigating the influence of select biopolymers and medium formulations on bacterial and nutrient transport. Fluidic layers will be designed to simulate relevant sediment grain
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theoretical models and numerical tools (master equations, quantum trajectory simulations) to investigate coupling regimes, dynamical phase transitions, and the effects of collective dissipation on coherence and
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towards potential industrial transfers (self-calibrating instruments for polarization control), and an activity on theory (simulations of cavity-QED devices), which both represent assets for the present
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of configurations generated in silico as well as their thermodynamic, dynamic (phonon), and mechanical properties, and performing DFT/MLIP NpT and NVT molecular dynamics simulations. - Analyzing and exploiting
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, visit https://www.biocean5d.org/ . The applicants will work on close collaboration with Jose M. Montoya, from CNRS. - Developing analytical theory and/or simulation models on the relative importance
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background in semiconductor physics and photovoltaics * Proficiency in electromagnetic simulation of nanostructures and semiconductor devices Website for additional job details https://emploi.cnrs.fr/Offres
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of the project is to design, model and simulate neural networks based on magnetic skyrmion nucleation and propagation. The second objective is to fabricate these hardware neural networks, characterize