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PhD position: Nanoengineering refractory compositionally complex alloys for extreme conditions (M/F)
fundamental correlations between composition, microstructure, and irradiation-induced behavior, in order to guide the design of high-performance RCCA materials. The results will provide design strategies
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) combine their expertise to fully develop, that is including sub-systems design and optimization, a versatile reversible sCO2 Brayton cycle targeted to harvest industrial waste heat. In this project, LMFA
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accelerators, energy and the environment and health. IJCLab has very significant technical capacities (around 280 IT) in all the major fields required to design, develop / implement the experimental devices
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, biological and nanoscience domains. The candidate will be expected to develop their own research project compatible with the project vision, design and execute experiments, analyse and interpret data, and
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mechanical output. Overall, this work will enable the screening and rational design of optimized photoswitch/polymer combinations4 and will lay the groundwork for future PPA materials design. The candidate
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world. Designed primarily as a neutrino oscillation experiment, it aims to deepen our knowledge of this phenomenon, including determining the mass order of neutrinos, measuring the phase of charge-parity symmetry
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innovation, collaboration, methods, pedagogy Contact for HR: Please sent your application to institut-arts@univ-st-etienne.fr before the deadline 25 of May, 2026 23h59 (Paris Time), it should include
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regeneration; iii) develop functional tests allowing a differential assessment of tip link break in humans experiencing TTS. The work plan is structured as follows: Characterise tip link damage following TTS
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Objectives The PhD candidate will be involved in: Design and synthesis of novel bi- and tridentate CAAC ligands Exploration of coordination chemistry with first-row transition metals (Mn, Fe, Co, Ni). Full
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environment at the CNRS Coordination Chemistry Laboratory in Toulouse, France, as part of the “Molecular Design of Transition Metal Catalysts” group. This PhD position is funded by the ANR through the project