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-synchronized stimulation system (rSynES), developed by Dr. Isabelle Vivodtzev, targets accessory respiratory muscles and has shown promising results in improving respiratory function. Suggesting that it may
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of new applications in physics, materials science, and imaging; -the improvement of electron beam performance in terms of energy, stability, and beam quality. The UPX group combines experimental research
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will explore (Gd, Zr, La)-doped HfO₂ as a reference ferroelectric layer and optimize performance (memory window, multilevel writing, endurance) through the fine-tuning of thin films (interlayers
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(SEM), and other relevant methods; • Optimizing the synthesis of the most promising MOFs; • Writing reports, including literature reviews, progress reports, and project deliverables; • Participating in
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. - development of supported catalysts; - ink formulation and preparation of catalyst layers; - fabrication of optimized membrane-electrode assemblies and their testing in an electrolysis cell (performance and
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perfusion and mechanical stimulation in tumor tissues to investigate their poromechanical properties and optimize molecular transport within explants. The successful candidate will be involved in: - Designing
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, they will be involved in: • the implementation, optimization, and operation of cryogenic devices and systems; • performing low-temperature experimental measurements; • the development and experimental
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resonators) to optimize the optical properties. Once the devices operate at reasonably high performance, we can move to demonstrate specific applications, namely high-resolution fast spectroscopy by sideband
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fluorescence microscope optimized for imaging individual cells within microtumors. Through this work, the PhD candidate will receive hands-on training in the design, implementation, and optimization of a state
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joint research unit (UMR CNRS 7315) operated by the CNRS and the University of Limoges. Affiliated with the CNRS Institute of Chemistry (INC), IRCER conducts research on the understanding and control