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Field
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. The MATICE group investigates the evolution of the physicochemical and structural properties of materials used in the nuclear industry under extreme conditions, particularly high temperatures and irradiation
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opportunities for heat integration, energy recovery, and process optimisation Develop and evaluate alternative process configurations and plant architectures Investigate process intensification and advanced
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notably on geothermal energy and heat storage, carbon capture and storage, natural hydrogen, underground storage of energy vectors, and radioactive waste storage. This position will contribute to the R&D
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spectroscopy) Device fabrication (cleanroom techniques, lithography) Low-temperature or high magnetic field experiments You have good communication skills and a strong command of English language (written and
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. This comprises the development of new sources for very cold particles with high phase space density and loading rate, quantum coherent beam splitters, advanced detectors in a mass range that is challenging
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utilize low-grade waste heat. The project aims to develop methods for the design, optimization, and operation of integrated systems that maximize both economic performance and environmental benefits
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span broad research areas in metallic and ceramic materials (high-temperature intermetallic, space materials, high-strength steels, porous ceramic materials, and materials intended for energy recovery
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utilize low-grade waste heat. The project aims to develop methods for the design, optimization, and operation of integrated systems that maximize both economic performance and environmental benefits
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pads on select substrates in terms of its geometry to ensure radial heat flow and estimate the thermal penetration depth. Review literature to obtain appropriate equations to measure thermal conductivity
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heterostructures under ultra-high vacuum conditions. GNRs are emerging quantum materials whose electronic structure, topology, and spin states can be engineered with atomic precision, but many reactive GNRs degrade