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students. It was heavily involved in various aspects of the experiment: analysis of the data collected by the prototype at CERN (ProtoDUNE), simulations and optimization of the neutrino event reconstruction
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states beyond 2 V to analyze the evolution of charge storage mechanisms. Six-month cycles of simulations and experimental validation will be alternated throughout the PhD to optimize experimental
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states. During this primarily experimental thesis, the candidate may need to perform theoretical developments in quantum optomechanics and numerical simulations based on the encountered needs
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engineering of non-equilibrium cold plasmas, as well as environmental and biomedical applications, via fundamental studies ranging from basic data to the multi-physics simulation of discharges and reactors and
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(LLR), which is made up of approximately 30 members working on Higgs boson physics, standard model physics, and beyond. Members of the group are also involved in the operation of the detector and on
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pain model. This project will provide the candidate with strong expertise in the neurophysiology of brain circuits and advanced technical skills, including stereotactic surgery, optogenetics, and rodent
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, international, and interdisciplinary research environment. Competitive salary and funding for travel and equipment. Selection process Applications should be submitted via the CNRS recruitment portal and contain
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biologists, physicists and computer scientists. Your second base will be Alphée Michelot's group at the Mechanobiology Institute of Singapore (MBI) to achieve objective 3. The Michelot group is an expert in
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knowledge of the synthesis and characterization of materials. Signal processing skills are appreciated, but not mandatory. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre/UMR8520-YANCOF-019
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alignment properties (uniformity, contrast, anchoring energy…). She/will be also implied in several campaigns of technological processes (photolithography, wet and dry etchings, metallization, nanoimprint, LC