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operating currents and conductors composed of multiple REBCO tapes in parallel. It is therefore necessary to develop experimental and numerical study capabilities for quench dynamics in REBCO conductors and
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Research Unit jointly operated by the CNRS and the University of Lille. Founded in 1998, it builds on more than sixty years of scientific excellence in Lille in the study of light–matter interactions. Its
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liquid solvent film to control growth, offers an innovative approach to overcoming these challenges. This PhD thesis aims to understand the fundamental mechanisms of 3C-SiC growth via TSM by studying
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Description This PhD will be co-supervised by: • Sylvain Burri (UMR Traces, Toulouse), • Jérôme Buridant (UMR EDYSAN, Amiens), • Raphaël Lachello (LARHRA UMR5190/GRESEC, Grenoble). It will involve a broader
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of the range of nucleophiles that can be used and the selectivities of these reactions are limited. The proposed thesis topic will focus on the study of MHAT reactions catalyzed by cobalt complexes (initially
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), within the ATLAS group. The PhD student will join a large-scale international collaboration and participate in the activities of the ATLAS experiment at CERN. The work will focus on the analysis of data
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(MCU-PH). The PhD student will be co-supervised by Dr Julie Bernardor and Dr Stoyan Ivanov (immunologist, expert in myeloid cell biology), and will more broadly benefit from established collaborations
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through the EU Research Framework Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description The PhD thesis will be carried out
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acquire in the course of the PhD skills in live microscopy, experimental neurobiology, genetics and behavioural work. The student will receive mentoring and have the chance to guide the research and
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understanding of catalysis beyond the first coordination sphere. The PhD student will be in charge of the study of the electrochemical and spectroscopic studies of the new cobalt complexes in homogeneous solution