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characterize microplastic contamination in urban environments and to estimate the annual microplastic loads discharged into receiving rivers at the scale of a given territory. In parallel, the postdoctoral
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terms of electrical performance and manufacturing complexity (number of manufacturing processes and dispersion tolerance). The best architectures will be designed (mask layout), in close collaboration
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processes that enable cells to move through a biological matrix in the absence of adhesion, by exploiting the topography of their environment. The consortium brings together two teams of physicists
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contribute to the preparation of manuscripts. Our research focuses on uncovering the proximate mechanisms underlying evolutionary changes in developmental and behavioural processes in nematodes. Much of our
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specialized training and mentoring and will be integrated into the project network. A personal computer will be made available to the researcher Where to apply Website https://emploi.cnrs.fr/Candidat/Offre
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operations of chemical (mixing process in deep bed reaction systems), petroleum (oil-water separation systems), and biomedical industries (drug delivery encapsulating system) as well as in environmental
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Description The researcher will use modeled surface ocean microplastic abundances and improved sea-spray-based emission functions to represent ocean–atmosphere transfer processes. Using the GEOS-Chem global