18 phd-energy-or-power-or-grid-or-optimization Postdoctoral positions at CNRS in France
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experimental parameters (time, temperature). To optimize these parameters, active learning techniques based on Bayesian optimization will be applied. In situ or ex situ characterizations (FTIR, ¹¹B/¹H NMR, HP
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structural health monitoring of structures immersed in heavy fluids, by continuing to develop the “Modal Strain Energy” and “Matched Field Processing” methods for detecting and locating a potential defect in
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optimizations are still needed to adapt the translation of these mRNAs to the cell types of interest. As part of a collaboration with Chantal Pichon's team (University of Orleans), this project aims to use
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used to determine geometries and relative stabilities; to compute frontier energy levels, electron affinities, ionisation energies, reorganisation energies, and other descriptors linked to n‑type
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FieldMathematicsYears of Research Experience1 - 4 Research FieldHistory » History of scienceYears of Research Experience1 - 4 Additional Information Eligibility criteria - PhD in computer science or applied mathematics
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” focusing on the effect of a fluctuating environment on the collective dynamics of self-propelled agents, a numerical part on “reinforcement learning” focusing on optimizing communication between agents in a
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. It aims at elucidating fundamental physico-chemical parameters into play in these batteries to propose improvements of cell components, i.e., electrode materials and electrolyte. Possibility to extend
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- The candidate must hold a PhD in theoretical chemistry or physics. - expertise in quantum chemistry and ab initio molecular dynamics, quantum dynamics if possible - be able to program and script in a language of
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contracts and 102 doctoral students. This research activity will be carried out within the CMS team, which is right now composed of 12 permanent researchers, 4 PhD students, and 10 engineers. The recruited
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microscopy experiments on materials and devices. This platform covers energies ranging from 5 keV to 5 meV, thus encompassing a wide range of phenomena, from fundamental level transitions to phonons