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processes that govern the formation of the red algal cuticle. The candidate will use biochemical and structural methodologies to understand the protein constituents of the red algae cuticle and how they vary
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design. • Nanophotonics and strong light-matter coupling in any spectral range (e.g., plasmonics, metamaterials). • Scientific programming and data processing. • Cleanroom fabrication and nanofabrication
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into the atmosphere if their use intensifies. It is therefore important to study the main degradation processes of these products upstream in order to verify whether they could have a negative impact on the environment
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criteria Level I animal experimentation, expertise in animal surgery, skills in pharmacokinetic analysis. Website for additional job details https://emploi.cnrs.fr/Offres/CDD/UMR7275-HELMAR-006/Default.aspx
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maintain, internal mechanical stresses [2]. These residual stresses remain even when all external forces are removed. Residual stresses likely contribute to the regulation of size in morphogenetic processes
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well as their electrical characterisation. His/her role will involve overseeing all nanofabrication activities within the project, including the development of new cleanroom processes, as well as training PhD students in
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analysis and visualization, signal processing, and ideally machine learning. • Working knowledge of Distributed Acoustic Sensing (DAS) and its applications in seismology (appreciated). • Aptitude
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laser deposition (PLD); • Implementing partial and total reduction processes of the films, with or without capping layers; • Performing structural and electronic characterization using X-ray diffraction
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experiments to investigate the diverse mechanisms (e.g attention, acoustic and semantic processing) involved when humans listen to naturalistic auditory scenes. The experiments will collect behavioral, MEG (OPM
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conjugates into fluorescent nanostructures, which growth results from a combination of dynamic covalent and supramolecular processes, moving from solution studies to model lipid membranes, then live cells