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composite materials for next‑generation aeroengines. The role focuses on developing bespoke high‑rate experimental techniques and cutting‑edge simulation tools within Oxford’s Impact and Shock Mechanics
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for high-temperature applications. The research includes a multifactorial analysis of the relationships between chemical composition, manufacturing technology, microstructure, mechanical properties, and the material's
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composite materials for next‑generation aeroengines. The role focuses on developing bespoke high‑rate experimental techniques and cutting‑edge simulation tools within Oxford’s Impact and Shock Mechanics
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Conversion focuses on materials and device innovation for sustainable energy conversion and storage technologies. The research project focuses on the development of solid electrode composites, so-called
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advanced modelling and design of structural systems and materials, and you will contribute to strengthening the department’s activities in areas related to composite and sandwich structures and optimization
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Requisition Id 16915 Overview: We are seeking a highly motivated postdoctoral researcher with a strong background in composite material development, technology development from lab to large scale
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shaping approaches (e.g., pellets, monoliths, composite beads/fibers, thin films), both with and without binders, while preserving or enhancing material performance. Perform advanced physicochemical
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emphasis on urinary tract infections. The position will require collaboration with several labs focused on microbiology, endocrinology, cancer biology, materials science, and pharmacology, with a focus on
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-dimensional (2D) nanomaterials into structural and functional composites designed for next-generation energy technologies. The position combines fundamental materials synthesis, advanced characterization
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Post Doc position in transition metal catalysis and carbon capture Are you interested in combination of transition metal catalysis, and can you contribute to the development of materials for CO2