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–plasma interactions, and laser-driven particle accelerators. It brings together approximately 80 researchers, faculty members, engineers, PhD students, and postdoctoral fellows. The LOA conducts research
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scientific activities, including particle accelerators and detectors for high-energy physics, nuclear physics, astroparticle physics and cosmology, as well as applications in health and environment. Located
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to accelerate formulation discovery. Experimental data will be organised into a comprehensive database and analysed using statistical learning and Bayesian optimisation, establishing a closed-loop framework
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design workflows for nanoporous carbon electrodes for sodium-ion batteries. The objective is to accelerate the exploration of virtual carbons with varied microstructures by combining numerical structure
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, acceleration, algorithms for optimal transport or generative AI). A good knowledge of Python programming (for AI, optimization) is highly desirable. Website for additional job details https://emploi.cnrs.fr
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. The first consists of a device designed to ionize a gas and then accelerate the ions thus formed via a potential drop applied to a metallic grid. The second uses a magnetic field to trap the electrons
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available to study these particles is the world's most powerful particle accelerator: the Large Hadron Collider (LHC), operated by the European Organization for Nuclear Research (CERN). Among the major
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accelerators, energy and the environment and health. IJCLab has very significant technical capacities (around 280 IT) in all the major fields required to design, develop / implement the experimental devices
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are nuclear physics, high energy physics, theoretical physics, astroparticles, astrophysics and cosmology, particle accelerators, energy and the environment and health. IJCLab has very significant technical