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Field
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-growing, innovative deep-tech environment. Opportunity to work within a high-tech ecosystem of excellence. Stimulating technical and scientific challenges. Join a promising structure with strong growth
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to drive progress in aerospace: aerodynamics, flight dynamics, propulsion, structural strength, materials, optics and laser, acoustics, radar and electromagnetism, electronics, systems, robotics, information
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the development of flexible nanozeolites. This position offers a unique opportunity to explore the structural dynamics of nanozeolites under varying conditions and contribute to advancing green
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technology. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre/UMR5237-HIEPHA-008/Candidater.aspx Requirements Research FieldChemistryEducation LevelPhD or equivalent Research FieldPhysicsEducation LevelPhD
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", - " Innovative mechanical experiments, including with imaging ", - " Sustainable materials and structures with low environmental impacts". The Candidate must submit a research proposal that matches the key topics
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: - 1 Associate Research Professors whose research project pertains to the study of structural or microstructural properties in a laboratory that maintains strong connections with large-scale research
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(parameters, data, structure) and produce uncertainty intervals for key outputs (abundance, biting rate); - Conduct temporal and spatial validation; leave-area-out validation; inter-city transferability tests
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RNA sequencing). RNA structural probing: Implementing the Nano-DMS-MaP method, developed in the host laboratory, to map the secondary structure of full-length viral RNAs and DVGs at single-nucleotide
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scattering laboratory. Its mission is to develop its own research using neutron scattering, the construction, maintenance and operation of instruments installed around different neutron sources in Europe, as
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within the SAMS Research Group (http://sams.ics-cnrs.unistra.fr/en/ ). PROJECT DESCRIPTION: The post-doctoral researcher will show that by integrating molecular motors into supramolecular self-assemblies