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] (AI-assisted Simulations of Microstructure driven MEchanical properties from high Throughput and multiscale analysIS), in the framework of PEPR DIADEM[2] , which aims to develop an advanced
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the laboratory P3Cell, INSERM UMR-S 1250 – University of Reims Champagne-Ardenne (URCA). Research programs developed in close collaboration with clinical departments at the University Hospital of Reims (CHU) aim
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explicitly incorporating these uncertainties through "soft constraints," in order to produce more reliable and relevant simulations. This PhD project is part of task 2.2 "Development of Artificial Intelligence
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at Université Paris Cité, 75013 Paris. The LIED aims to develop both fundamental and applied research addressing the challenges of energy and climate transitions. In this context, the laboratory promotes a
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Stehly. Anne Paul, PI of the MACIV project, will assist with the supervision. These researchers, and more broadly the Waves and Structure team, have been heavily involved in the development of methods
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to on-going theory-experiment collaborations, and supporting PhD students. • Initiative in developing new projects and securing external funding is highly encouraged. • Additional expertise in quantum
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AMMETIS[1] (AI-assisted Simulations of Microstructure driven MEchanical properties from high Throughput and multiscale analysIS), in the framework of PEPR DIADEM[2] , which aims to develop an advanced
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to develop a novel non-invasive and low-cost ultrasound-based monitoring approach to assess the state of health and remaining useful life (RUL) of power converters deployed across various industries
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with local cellular and molecular processes. The successful candidate will develop a multidisciplinary research program combining in vivo and in vitro approaches. Experimental work will involve advanced
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, we develop kinetic models, but these models are reliable only for operating conditions quite close to the optimum production conditions and in isothermal conditions. By working at isothermal conditions