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Biology of Membranes and Nano-objects (CBMN) is a multidisciplinary research institute at the interface of physics, chemistry, and biology. It hosts 15 research teams and provides access to a comprehensive
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of the successful candidate is to perform bioinformatic analyses of metagenomic sequencing data for viruses present in wastewater (reference-based alignment pipelines, variant detection, and de novo assembly). He
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are gradually reaching their limits due to: • The detection of weak or precursor anomalies in highly converted architectures; • The multiplicity of energy sources and components (converters, batteries, hydrogen
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potential of these antibodies in vivo, notably in a murine model of rheumatoid arthritis, as well as in other relevant disease models aligned with the team's research objectives. The postdoctoral researcher
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multicolor fluorescence labeling of mouse neurons according to their cell lineages. The team is currently pursuing the improvement of the technology and exploring novel applications. Objectives: A first
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-associated mutations. Three specific objectives will be pursued: (i) to characterize the role of NAV1 in regulating adhesion dynamics during axonal navigation; (ii) to elucidate the molecular mechanisms by
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, France to complete the project. Objectives The objective of this PhD project is to develop advanced numerical modelling tools to support the digital twins of refractory materials, with the aim
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applied to ceramics and surface treatments in order to produce objects with the desired properties. The company CERAQUITAINE (https://www.ceraquitaine.com/ ) is a manufacturer of niche refractory parts. As
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photoluminescence imaging (HMSPL) to detect and study previously unrecognized anatomical and chemical contrasts that enable better identification of the whole or partial specimens analyzed. - Data processing and
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versatility of the size and redox properties of the f-block elements. The second objective is to use these ligands to promote the formation of multimetallic assemblies in which the metal atoms are close enough