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interesting and challenging. These nuclei are less likely to be populated by fusion-evaporation, the standard method of SHE production, but are predicted to be more favorably populated by the multi-nucleon
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PhD position: Nanoengineering refractory compositionally complex alloys for extreme conditions (M/F)
refractory compositionally complex alloys (RCCAs) in the form of thin films, targeting their application in extreme environments such as those encountered in nuclear fusion reactors. The approach relies
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PRIME (Projet de recherche inter-instituts multi-équipes) interdisciplinary CNRS programme (http://www.cnrs.fr/mi ). The PhD candidate will be co-supervised by Florence Niedergang (Team « Biology of
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Sklodowska-Curie Doctoral Network linking 21 academic, cultural, and industrial partners to develop advanced nondestructive evaluation and data-driven digital tools for paintings and 3D artworks (https
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the MediTwin project, which aims at advancing patient-specific digital twins for medical applications by combining physics-based modeling, data assimilation,and efficient computational pipelines (https://www
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for industrial applications in material and health science. However, the role of the reorganization of the nanostructures (unimer exchange, fusion/fission) during PISA on their morphologies has hardly been studied
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PhD student at ILL on Advanced Neutron Imaging for Defect Mapping in Repaired Aero-Engine Components
extend their service life. However, qualification of repaired metallic components is limited not only by incomplete understanding of internal defect populations (e.g., porosity, lack-of-fusion defects and