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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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(ANR-25-CE51-3871), which started in January 2026. This project aims to develop and optimize a micrometer-scale surface texturing process based on thermochemical treatments performed using arrays of cold
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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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. Characterize the neural circuits underlying auditory categorization. 3. Manipulate auditory mental categories to optimize behavioral flexibility. This PhD project, at the interface between Physics and