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                of very high energy particles (VHE) and that they are likely sources of (VHE) neutrinos. Understanding where and how particles are accelerated in these extreme environments has thus become a key question 
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                . These phenomena are based on the description of a complex flow formed by particles suspended in water, whose solid concentration is controlled both by soil erosion and by particle sedimentation processes 
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                , particle accelerators and detectors, as well as technical research and development and related applications for energy, health, and the environment. The facility has significant technical capabilities 
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                particle detectors, as well as technical research and development and associated applications for energy, health, and environment. The laboratory has important technical staff (approximately 280 engineers 
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                temperatures at CEA-LETI. Circuits functions that are targeted for design and fabrication using the available design environments include RF LNA amplifiers, passive filters and analog signal generators working 
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                hydrogen permeability and good compatibility with metal hydride particles. The project will begin with a study of the activation conditions and reaction kinetics of Ti(Fe,Mn)@polymer PDMH pellets for each 
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                . The ANTARES ANR project aims to develop BAW resonators with superior quality factors in the 8-24 GHz range, to be included in 6G radio-frequency filters. For this application, one partner of the project has 
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                extreme or poorly documented conditions. In parallel, a reliable state of charge (SoC) estimation strategy will be implemented. It will rely in particular on the implementation of Kalman filters and AI 
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                particles with binder materials. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre/UMR6303-FREDEM-004/Candidater.aspx Requirements Research FieldEngineeringEducation LevelMaster Degree 
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                using laser diagnostics, including: Flow visualization via Particle Image Velocimetry (PIV) Flame structure imaging via OH Planar Laser-Induced Fluorescence (PLIF) Wall temperature measurements via Laser