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12 Sep 2026 Job Information Organisation/Company CNRS Department Unité de biologie moléculaire, cellulaire et du développement Research Field Chemistry Physics » Biophysics Biological sciences » Biological engineering Researcher Profile Established Researcher (R3) Application Deadline 2 Oct 2026...
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fabrication of microfluidic devices, the formulation and characterization of hydrogel matrices, the encapsulation and culture of adipose spheroids, and the characterization of engineered microtissues using
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to explore the self-organization of active mechanical stresses involved in cell migration within complex three-dimensional environments such as extracellular matrices. The selected candidate will play a key
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, transmission…) at the surface. Resistance to wear and fatigue are increased thanks to hardening of the surface, while the ductility is kept in the core, and thanks to the formation of compressive residual
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mixtures, including information retrieval, random access, approximate search, querying and filtering, encryption, compression, and many other information-processing tasks. Our team is looking for a talented
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and fabricating innovative microfluidic devices; - Developing experimental methods to measure tissue permeability, elasticity, and compressibility; - Performing transport experiments under controlled
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Chemistry and Materials for Environment and Health develops analytical methods for the detection of organic molecules mainly in the air but also in other environmental matrices (water, soils). The activities
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areas. Recording, documentation and data management • Supervise the documentation of each locus through field records, photography, drawings, stratigraphic matrices, topographic survey, photogrammetry and
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networks). • Compare different strategies (topology, tensor order…) to seek for an optimally compressed representation of turbulent velocity fields and of relevant operators in tensor network form. • Perform
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the generation of coherent extreme ultraviolet (XUV) radiation while simultaneously offering the possibility of spatially and temporally compressing the optical energy. The resulting intensities can exceed those