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-package of the ChiExCo program, which aims to develop a reliable computational protocol to predict, for organic chromophores, both chirality quantifying factors (gabs and glum) resulting from excitonic
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PhD student at ILL on Advanced Neutron Imaging for Defect Mapping in Repaired Aero-Engine Components
many conditions governing microstructural evolution and defect formation, yet the physics linking process conditions to three-dimensional defect distribution in engineering-scale geometries remains
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, real systems must account for losses, non-uniform flux distributions, material limitations, and experimental constraints. Developing realistic cavity architectures and validating them experimentally is
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: The MOVING project aims to develop an ethnographic and interdisciplinary methodology for studying the traces and memories carried and transmitted through bodies, of African slavery in post-slavery and
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methodological developments. It makes it possible not only to reveal paintings invisible to the naked eye, but also—by combining spectroscopy and imaging—to access the mineralogical nature and spatial distribution
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regimes. This PhD project aims to develop predictive pore network models integrated with thermodynamics and upscaling methods toward reservoir-scale applications. We seek candidates with a strong background
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Cordeliers (CRC, Paris). The laboratory has a strong expertise in the development of ultrasound-based imaging modalities, such as pulse-echo ultrasound imaging and photoacoustic imaging. The project will
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). Finally, we will focus on the evolution of the physical properties of materials, with particular emphasis on the impact of selenium on the mechanical strength of matrices, which is an important parameter in
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research, the FSTM seeks to generate and disseminate knowledge and train new generations of responsible citizens in order to better understand, explain and advance society and environment we live in. Your
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synthesis due to steric hindrance and associated selectivity issues. Thesis Objective: This thesis aims to develop new synthetic methodologies based on controlled cationic chemistry to access these highly