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includes: Synthesis, development and optimization of advanced biobased polymer matrices and polymer blends. Formulation and processing of high-performance thermoset systems. Development of carbon fibre
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contribute to the following activities: - Design and optimization of functional formulations containing luminescent nanoparticles - Study of colloidal stability, rheological behavior, and dispersion quality
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. - development of supported catalysts; - ink formulation and preparation of catalyst layers; - fabrication of optimized membrane-electrode assemblies and their testing in an electrolysis cell (performance and
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cartilage and intervertebral discs under biomimetic loading conditions, coupled with advanced imaging systems. - activities: Adapt and optimize the SOLANO miniaturized hexapod robot (Symétrie) for high
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, they will be involved in: • the implementation, optimization, and operation of cryogenic devices and systems; • performing low-temperature experimental measurements; • the development and experimental
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the framework of the URANUS project. Main activities : Develop and optimize AESEC experiments coupled with electrochemical systems operating in highly corrosive and/or high-temperature environments. Design
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generation of MOF water adsorbents with optimal indoor air humidity control performance by leveraging state-of- the-art high-throughput (HT) computational screening based on Machine-Learning Interatomic
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the research team; contributing to the optimization of the investigated enhancement geometries; disseminating research outcomes through publications in leading international journals and presentations
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, CeRh2Si2, TbB4 etc.) near metamagnetic transitions and unconventional superconducting phases. Within step 1, magnetization probes will be developed, tested and compared before choosing the most optimal
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numerical techniques to study collective states in active matter. Depending on the candidate's profile and interests, the research can involve various aspects of the modeling and the optimal control of active