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at low overpotentials, exhibit high turnover numbers (TONs) and frequencies (TOFs), and be based on earth- abundant transition metals. Despite challenges related to long-term stability, molecular catalysts
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potential for covering the growing need for high-precision sensors, both for basic science and for industrial applications. State-of-the-art quantum sensing methods rely on spin defects hosted in three
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interact with other participants in the project. • Responsabilities • Perform research on Platynereis and Ascidian larvae to investigate pressure sensory systems using neurobiology and genetics approaches
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French multinational company and a world leader in the production and processing of industrial minerals, serving a wide range of high-performance industrial applications. This PhD project is part of
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from the LHC's Run 3, with prospects toward the High-Luminosity LHC (HL-LHC) program. Particle physics studies the fundamental constituents of matter and their interactions. One of the best tools
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: How can we develop frugal, robust, and interpretable methods for anomaly detection and fault diagnosis in reconfigurable multi-source microgrids, while maintaining high performance in data-constrained
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the ATLAS experiment. Prospective studies will also be performed to assess the expected sensitivity of these measurements at the High-Luminosity LHC (HL-LHC). The PhD project will be carried out in close
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high quality factors. These properties make it possible to envision all-optical, high-resolution, and non-invasive photoacoustic imaging systems with potential biomedical applications. The development
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deformable high-pressure reactor (piston). • Method development, operation, and maintenance of analytical equipment: ion chromatography (for highly concentrated brines) and gas chromatography (equipped with
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broader nanoscience applications. These coatings will then be exposed to deuterium ions (250 eV) and plasmas (few eV). To ensure accuracy, all experiments will be performed under vacuum or ultra-high vacuum