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two main objectives: (i) establishing a theory–experiment feedback loop to identify the fundamental mechanisms governing multicellular self-organization, and (ii) developing a novel imaging platform
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is low compared to the ion cyclotron frequency. However, this low-frequency approximation does not apply to most experiments, where the phase velocity is of the same order of magnitude as the ion
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the orbital magnetism of rhombohedral multilayer graphene using this technique, over the full phase diagram by varying the chemical potential, magnetic field and temperature. We expect these experiments
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to photonic structures, in particular plasmonic structures, whose resonances are confined within a few nanometres. The equipment and experimental setups for quantum optics experiments (lasers, cryostats
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pattern) and spectral dispersion; (3) to assist in the conception and interpreta-tion of experiments conducted on LULI's laser facilities (LULI2000 and Apollon). Methodology - The numerical studies will be
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training that includes courses in planetology and planetary plasmas. • The student can demonstrate research experience (M1 and/or M2 internships) on a topic related to planetology and/or space plasmas
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appreciated skills: - experience in conducting complex experimental work with Electric applications and/or Cryogenics, - numerical Modelling skills Where to apply Website https://emploi.cnrs.fr/Offres/Doctorant
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for administrative registration. See: https://www.ehess.fr/fr/doctorat-anthropologie-sociale-et-ethnologie • Applications must include the following documents: - a CV - a cover letter + 2 letters of
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appropriate strategy is still often based on user experience rather than on a quantitative methodology. For several years, the MOST team at LEGI has been developing advanced simulation methods within the YALES2
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available. The wet part of the project will be done at the IBPS, and preliminary data demonstrated the feasibility of the project. Indeed, our team has extensive experience in X. laevis embryo dissection