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on the implementation of an innovative technique called 3D-AFM (the only one of its kind in France) that makes it possible to characterize liquid/solid interfaces at the nanometric scale by studying the behavior
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mechanics, inert, anisothermal and reactive fluids, to effects related to complementary physical properties of thermal, combustion and detonation. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre
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3D environments. • Design of a robust control architecture to ensure autonomous navigation using information from the optical localization system (development of estimation algorithms, use of observers
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of Research Experience1 - 4 Additional Information Selection process Applications must be sent before March 3d to this email address: job-ref-42dqy7g9pn@emploi.beetween.com Work Location(s) Number of offers
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project, will contribute to the development of a 3D thermal and fluid-flow model spanning from the well scale to the basin scale, enabling the assessment of the region’s geothermal potential at any given
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NOx emissions will also be explored. This research is expected to be published in peer-reviewed journals. Keywords: Porous burner, 3D CFD, hydrogen and ammonia combustion modelling, heat transfer
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methodology toward 3D spatial and temporal strain–temperature imaging for the optimization of next-generation electronic and optoelectronic devices. Further information may be obtained from: Tobias Schülli (tel
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, neuronal differentiation, as well as 3D culture, organoids in the context of neurodevelopment and disorders. He/she will have some experience in generating stable lines in human stem cells, current single
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methodical, rigorous, reactive, and attentive, with a strong work ethic and high integrity. He/she will already have experience with human stem cells, neuronal differentiation, as well as 3D culture, organoids
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Inria, the French national research institute for the digital sciences | Montbonnot Saint Martin, Rhone Alpes | France | 3 months ago
of a full collection of curly filaments in 3D remains scarce. The objective for this PhD position is to combine our current numerical and experimental works on fiber assemblies to better understand and