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twenty scientists and seven PhD students in France and in Brazil. Close links are expected with another PhD thesis of paleoclimate modelling based in Brazil. The PhD thesis is also part of an active French
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Superconductivity High-temperature critical superconducting (HTS) materials, particularly those based on REBCO, enable the development of fully superconducting magnets capable of generating very high magnetic fields
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previous field campaigns, the project does not include fieldwork missions. Most of the whole genome data has already been generated and validated, the majority of the thesis work will be based
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the long term, situating them within their chronological, environmental, and climatic contexts across different geographical areas. You will be based at the Musée de l'Homme (Paris) within the ComE team
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lines, as well as high-resolution live-cell imaging techniques. Where to apply Website https://emploi.cnrs.fr/Offres/Doctorant/UMR5237-JERBOU-001/Default.aspx Requirements Research FieldBiological
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selecting simulations to run based on a given prediction objective. • Implement and validate these developments in the YALES2 code. • Utilize high-performance computing resources to run the simulations
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comparative approach in three South American countries: Brazil, Chile and Colombia. The design of the project is based on a methodology combining three types of research: classic academic, experimental and with
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, hot spots may develop due to the poor heat removal capability of the vapor. Objectives and Methodological Approach The PhD project is based on a combined approach, integrating experimental
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jointly operated by CNRS and the University of Sherbrooke. LN2 provides a unique environment for research at the intersection of nanotechnology, advanced microelectronics, and hardware-based artificial
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) Dubinsky et al., Diazirine based photoaffinity labeling. Biorg. Med. Chem. 2012, 20 (2), 554. (b) Hill et al., Fishing for Drug Targets: A Focus on Diazirine Photoaffinity Probe Synthesis. J. Med. Chem. 2018