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to the project's collective publications. The work will be carried out in connection with the ERC Synergy Grant HorsePower project, co-directed by Ludovic Orlando (https://www.britishmuseum.org/research/projects
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the microvessels on chips both structurally and functionally. They will then be able to work on the mechanical stressing of these cellular systems in order to understand and elucidate the coupling between barrier
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- participate to team activities (lab meetings, seminars, common tasks) The candidate will join the Molecular Microbiology and Structural Biology (MMSB) unit (UMR 5086 CNRS, Université de Lyon) which gathers 11
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to study the molecular mechanisms of chromatin enzymes. We welcome highly qualified and motivated individuals with a Ph.D. training in structural biology (cryo-electron microscopy, X-ray crystallography) and
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Inria, the French national research institute for the digital sciences | Paris 15, le de France | France | about 2 months ago
mechanisms underpinning their strong capabilities. The unique structure of these models, as well as recent evidence [4, 5] indicating they forgo the advantageous properties of benign overfitting, suggests
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investigations of doping and measurements of transport and thermoelectric properties as a function of doping level - structural investigations via transmission electron microscopy The postdoctoral fellow will join
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, composite materials and process control using structural monitoring techniques. The person will under the supervision of lab director. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre/UMR8006
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manganese. In this context, the Horizon Europe project CICERO (https://cicero-horizon.eu/ ) aims to develop a sustainable and cost-effective model for the processing and refining of nickel, cobalt, and
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the development of methods for patient-centered health research in a multidisciplinary perspective. The unit is structured into four thematic axes. The project will be embedded within Axis 3, dedicated to methods
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charge/discharge cycles. The aim is to provide a unique tool to better understand the structure and evolution of interfaces/interphases in batteries, and thus, guide the design of more efficient and