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studies of orbital currents and conversion mechanisms to optimize the performance of spin-orbit devices Moirés of orthorhombic van der Waals magnets Exploring and controlling curvature-induced non
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solutions that maximize operational efficiency, minimize network impacts, and ensure the long-term sustainability of the proposed approaches. The project investigates optimized EV charging strategies aligned
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• Ability to work within a French research environment • Experience in optimizing protocols or developing new protocols • Proficiency with approaches and experimental design for mesocosm studies
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Inria, the French national research institute for the digital sciences | Pau, Aquitaine | France | 20 days ago
efficient computational framework. The selected candidate will be able to collaborate closely with experts who will help guide the research direction. This work will contribute to the broader objective
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Inria, the French national research institute for the digital sciences | Montbonnot Saint Martin, Rhone Alpes | France | 4 days ago
distribution. The work also aims to improve inference efficiency by reducing dimensionality, reusing computations, and combining multiple measurements. The PhD candidate will develop, test and validate
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-chemical properties similar to conventional kerosene, their combustion behavior can differ significantly, requiring adjustments and optimization of current gas turbines (GT). In this context, numerical
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systems.1 Recently, during two PhD thesis, we optimized Sb2Te3 and Bi2Se3 layers to obtain significant nonlinear absorption. More specifically, the saturable absorption behavior obtained was the highest
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. Combining field-level data with other data available in the cloud, such as weather data and food pricing models allow to further optimize smart farming. Among the most impactful operations for sustainable
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) between GaN and Silicon are at the origin of crystalline defects and mechanical stresses harmful to a controlled manufacturing of high-performance components. To address this issue, the project aims
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-dimensional plasmonic metasurfaces. The goal is to disentangle hot-carrier and thermal contributions and optimize metasurface designs for site-selective hot-carrier generation with minimal heating. The work