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technologies. The institute places particular emphasis on micro- and nanotechnologies, including nanostructures and nanoelectronics, microelectronics, microwave engineering, and microsystems. PhLAM is a Joint
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São Paulo, Brazil. The PhD candidate will join LAMIH UMR CNRS 8201, a research laboratory with strong expertise in automatic control, intelligent transportation systems, autonomous and electrified
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10 Jul 2026 Job Information Organisation/Company CNRS Department Groupe de recherche en Informatique, Image, Automatique et Instrumentation de Caen Research Field Engineering Computer science Mathematics Researcher Profile First Stage Researcher (R1) Application Deadline 30 Jul 2026 - 23:59...
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the context of a PEPR project, in collaboration with eight CNRS and CEA laboratories working on the future of electrical grids. More specifically, it is linked to WP5, dedicated to cybersecurity and network
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micro-gas turbines, additive manufacturing, and energy conversion. The PhD will primarily take place in the Nantes region. Research visits to the University of Sherbrooke will be organized throughout
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. The doctoral research is part of the TIRIS Scalingup Microcoredeal project, which aims to develop micro-models with a focus on designing and fabricating models that bridge the gap between laboratory settings and
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on the Belin-Roche campus at University of Toulouse. The doctoral research is part of the TIRIS Scalingup Microcoredeal project, which aims to develop micro-models with a focus on designing and fabricating
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, visiting researchers, master's students, etc.) Research Context Recent advances in mobile robotics have been driven by remarkable progress in perception, deep learning, and control. However, current robotic
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the possibility of performing controlled parametric studies and, ultimately, of extrapolating thermophysical properties towards conditions where convective transport is negligible. Fundamental questions
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biological mechanisms that control it remain largely unknown. The aim of this PhD project will be to understand how changes in pressure drive this extremely rapid three-dimensional reconfiguration of a tissue