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in silicon ensures compatibility with existing technologies and scalability for quantum communication and computing. Mechanical coupling of spins in silicon, particularly using surface acoustic waves
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approach combining: • The implementation and optimization of environmentally friendly extraction processes, • A fundamental understanding of the associated inhibition mechanisms, and • Life-cycle analysis
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26 Nov 2025 Job Information Organisation/Company CNRS Department Laboratoire de Mécanique des Fluides de Lille - Kampé de Fériet Research Field Engineering Chemistry Physics Researcher Profile First Stage Researcher (R1) Country France Application Deadline 16 Dec 2025 - 23:59 (UTC) Type of...
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-based concretes and insulation, offer interesting thermal, acoustic, and environmental properties. The OPTIMALin project focuses on the evaluation and optimization of thermal and mechanical performance
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funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description Investigate the mechanical properties of high-entropy alloy nanoparticles using in situ
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mixing rates can be expected from a libration-type forcing (periodic modulation of the rotation rate), an important mechanism in icy moons subject to strong gravitational coupling with their planet and
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mechanical/electrical characterizations of nanocomposite films (Cu₂O nanowires embedded in a CuCrO₂ matrix). He/She will also participate in the preparation of these nanocomposites. He/She will be in charge of
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mechanism by which HSFs control transcriptionally both short- and long-term heat stress response as well as their role on regulatory element activation with a focus on their ability to act as pioneer
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Inria, the French national research institute for the digital sciences | Montbonnot Saint Martin, Rhone Alpes | France | 3 months ago
the Chair "Artificial Intelligence and Mechanics for scale bridging in complex materials" (AIM), funded by MIAI Cluster AI and the ANR through the France 2030 program. The research will be conducted at Inria
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evaluate the mechanical stresses induced during cycling in all-solid-state systems (based on argyrodite and polymer electrolytes), and to identify the main driven force (rate, ratio of element composing