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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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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
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to understand deformation-controlled hydrogen systems by integrating seismic observations and THMC physical modeling at three complementary sites: Comminges (primary target), Oman, and New Caledonia. The central
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contribute to NDDs. In recent years, we have identified key roles for the microtubule-associated protein Navigator-1 (NAV1) in axon growth and guidance. Notably, we have shown that NAV1 controls
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microgrids integrating intermittent renewable energy sources (solar, wind), storage systems (batteries, hydrogen), power electronic converters, and controllable loads. These complex cyber-physical
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for the development of more predictive preclinical platforms. This PhD project is part of the ANR JCJC EXOFLEX project, which aims to develop an instrumented microfluidic platform capable of simultaneously controlling
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design enables fine control over catalytic efficiency and product selectivity, particularly for the CO₂ reduction reaction (CO₂RR). However, further improvements in catalytic performance toward
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activity component. At the interface between environmental radiochemistry, soil geochemistry and microbial ecology, this research will contribute to improving our understanding of the mechanisms controlling
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functional materials. Research activities focus on controlled polymer synthesis, macromolecular engineering, polymer self-assembly, nanoparticle design, and the development of stimuli-responsive polymer