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of crystallization conditions; preparation of samples for Cryo-EM and cryo-electron tomography; data collection and analysis; communication of results at conferences, scientific workshops, and thesis monitoring
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, we particularly study the activation of small molecules (such as H₂O, CO₂, N₂O) as well as proton-coupled electron transfer processes. The EMPRe team has all the necessary equipment
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spectrum of topics in CNU sections 27 "Computer Science" and 61 "Computer Engineering, Automation and Signal Processing". The laboratory is located at the heart of the Sophia Antipolis technology park, in a
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microgrids integrating intermittent renewable energy sources (solar, wind), storage systems (batteries, hydrogen), power electronic converters, and controllable loads. These complex cyber-physical
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technicians specializing in mechanics, electronics, computer science, instrumentation, and acceleration techniques. The laboratory also boasts leading research infrastructure and technological platforms
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physicochemical properties of the material under study. Xe will be introduced by ion implantation, and the samples will be subjected to irradiation treatments on accelerators, favoring either electronic effects
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static mode and under photonic excitation in order to establish the reference electronic state of the surfaces and to monitor its evolution. THz spectroscopy will then provide access to the conductivity
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at the IPCMS (Institute of Physics and Chemistry of Materials of Strasbourg), which investigates the electronic, optical, and magnetic properties of atomic-scale structures. The research will be carried out
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an equally innovative interdisciplinary approach: collaboration between Experimental Mechanics and Physics (PMMH) and Computer Graphics (inverse problems at LJK and printability at LORIA). These disciplines
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modelling of their structures and physical properties (optical, mechanical, electronic and magnetic) and their integration into devices. Topological spin textures play a central role in modern magnetism