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, nanoparticle handling raises important environmental and health concerns, making the development of safe synthesis processes that avoid direct manipulation a major challenge for the scientific community
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vivo electrophysiology. The successful candidate must have completed the required training in animal research procedure design (full training) and experimental surgery. Website for additional job details
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an innovative process, electrospinning, which enables the manufacture of nanofibrous materials with applications in various fields such as mechanical reinforcements, filters, sensors and biomedicine
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to the project being responsible for the development of integrated arrays of photonic antennas. Responsibilities will include the fabrication process in the C2N cleanroom; the design, simulation, and layout
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strong contributions to environmental flow modeling, energy systems, and thermal processes. LPENSL (Physics Laboratory of the École Normale Supérieure de Lyon) Supervisors: Romain Volk and Mickael Bourgoin
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. Implementation of a range of experimental diagnostics: intensified fast imaging (ICCD), optical emission and absorption spectroscopy, and mass spectrometry. Data processing. Analysis of results. Writing of reports
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use, utilizing innovative binary file analysis and deep learning to improve the security of computer systems. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre/UMR5104-MYRLAU-003
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Parkinson disease; anatomy of cerebello-thalamic pathways, electrodes/optic fiber/IMU implantations, surgery and behaviour. Study of cerebello-thalamic pathways and their role in Parkinson disease ; anatomy
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of semiconductor components. Wide bandgap semiconductor materials such as GaN are the ideal candidates to meet this new challenge. The work concerns new manufacturing processes for high electron mobility transistor
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processes. As waves break, they dissipate energy, generating intense currents that control the morphological response of beaches, including the erosion of beachfaces and dunes. Through these dissipative