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an electrolysis cell. In particular, stability will be assessed using accelerated degradation tests, and the structural and morphological evolution of the catalysts will be monitored via physicochemical techniques
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assemble within large structures called sarcomeres, where they play a central role in muscle contraction. One of the functional regulation mechanisms of the sarcomere relies on the incorporation of different
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dynamics simulations to understand the growth mechanisms of thin films deposited by magnetron sputtering, with or without ion beam assistance (IBAS), particularly for metallic materials (Ag) and oxides (ZnO
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interaction processes, serpentinization, and seismicity. However, the mechanisms controlling seismicity and hydrogen migration remain uncertain. The doctoral thesis will analyze diagnostic seismological
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printable internal architectures, and we will experimentally test these new shape-changing materials (3D scanning, mechanical testing). https://blog.espci.fr/benoitroman/phd-position-depressure-activated-pro
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is to study the structural dynamics of biological photoreceptors by either time- time-resolved cryo-electron microscopy or time-resolved X-ray crystallography in view of biotechnological applications
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, stability. While interfacial thermodynamics and mechanics are usually probed at macroscopic or mesoscopic scales, they are assumed to depend on microscopic interfacial structure (chemical composition
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The project will be conducted within the “Translation Mechanisms” team led by Emmanuelle Schmitt and Yves Mechulam at the “Structural Cell Biology” (BIOC) laboratory at École Polytechnique, https
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these mechanisms influence the band structure and the physical properties of 2D materials. The project will combine electronic spectroscopy with complementary characterization techniques, including electronic
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motor and respiratory functions, often leaving patients dependent on mechanical ventilation (MV), which in turn worsens diaphragm dysfunction and limits recovery. A new non-invasive, breathing