70 postdoc-in-nanoparticles-density-functional-theory PhD positions at CNRS in France
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a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description The work will be carried out within the Carbon Nanotubes and Graphene and Biotech teams
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) of the Toulouse Institute of Fluid Mechanics, as part of the ERC HYROPE project (Synergy Grant). This project is in collaboration with 3 European partners (ETHZ, NTNU, TU Darmstadt) and concerns the fundamental
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equipment, particularly in imaging and electron microscopy, image analysis, and bioinformatics. The team is composed of five people. The thesis will be carried out as part of a collaborative ANR project
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network contracts upon local stimuli to orient fluid transport where it is needed. This enables autonomous functionalities without the need for a complex nervous system. These organisms use fluid transfer
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PhD student (M/F) in Polymer Chemistry: Synthesis of cross-linkable, degradable and recyclable latex
student will work on the synthesis of polymer monomers and colloids. The main applications will be degradable and chemically recyclable polymer films, as well as encapsulation for the controlled release of
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interactions, dynamics and function of membrane proteins, protein folding and aggregation. The master internship and following PhD will be performed in close collaboration with the team of Yohann Boutte in
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their genomes evolve—through de novo gene emergence, modular recombination, duplication/loss, and horizontal transfer (HGT)—is essential for linking genome structure, function, and ecology. This thesis will
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Research Framework Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description The work will be carried out within the Laboratory
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on characterizing the structures and functions of viral RNAs, with potential applications for the development of new antiviral therapeutic approaches. The IBMC is a renowned research unit under the supervision
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of these megasynthases, through a rational design approach, to alter its substrate specificity and generate variants capable of incorporating functionalized amino acids. The ultimate objective is to create strains