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fundamental questions in statistical physics. The work is primarily numerical, and we seek candidates with experience in particle-based simulations (e.g., molecular dynamics) and a strong interest in large
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FieldHistory » History of scienceYears of Research ExperienceNone Additional Information Eligibility criteria The candidate must hold a PhD degree in the field of analysis (theoretical and/or numerical) of PDEs
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Post-doctoral position (M/F) for testing drought-based BEF relationships at CEFE Montpellier, France
) Carry-out additional simulations with the Phoreau model to test the effect of tree diversity on forests' resistance to droughts. ii) Analyse biodiversity-drought resistance relationships, across a
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or expect to complete a PhD in physics or a related field, with strong background in soft matter / nonequilibrium statistical physics / numerical simulation / statistical inference. Scientific skills
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the effects of these factors at the tissue level. The position will also involve simulating and optimizing complex models that integrate biological and physical data using advanced methods, such as physics
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of the UltiMatePV project and will coordinate tasks with the project's various partners. Participate in the technological maturation of devices. Conduct numerical simulations (optoelectronic devices, transport
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, Rouiller I (AUS), Jonic S (FR). MDSPACE: Extracting Continuous Conformational Landscapes from Cryo-EM Single Particle Datasets Using 3D-to-2D Flexible Fitting based on Molecular Dynamics Simulation. J Mol
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collaborations with the group’s academic and industrial partners. • Supervise interns, PhD candidates and postdoctoral researchers, and contribute to the collective scientific life of the laboratory. • Disseminate
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code; • Simulating spallation source transients in MYRRHA and EFIT and reactivity measurements using various types of detectors; • Comparing the space-energy effects calculated by simulation in MYRRHA
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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