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This project addresses a fundamental question concerning material failure under neutron loading in fusion energy components, particularly within the first layer of the breeder blanket. Previous work
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Engineering, and Materials Science. We particularly welcome applications from candidates from non-traditional education routes such as degree qualified apprentices or those seeking to move sector from another
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, environmental science, and industrial innovation. The project aims to advance a patented NTP technology for the treatment of a complex waste stream and solids. The research forms part of a broader programme of
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Breeding Ratio (TBR), which depends on several tightly coupled factors, including breeder blanket design, plasma-facing surface area, neutron transport, material composition, and cooling performance. Since
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structures. This highly interdisciplinary project combines mechanical engineering, materials science, and control systems, and will require both numerical simulation and experimental validation. The outcomes