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remaining functional under harsh geothermal conditions. The candidate is expected to work closely with D-TECH and may undertake a secondment period to test and apply the developed methods on industrial-scale
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. The primary focus will be on neutronics and optimisation of TBR within realistic fusion operating conditions. Initially, the research will employ Monte Carlo neutronics methods using tools such as OpenMC
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Additive manufacturing offers significant opportunities to produce complex, lightweight components that would be difficult to manufacture using conventional methods. One important application is the
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background, and emerging concepts inspired by quantum sensing technologies. The research will be primarily theoretical, relying on analytical methods from quantum field theory, general relativity, and
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of research with a continuous programme of practical skills training in semiconductor science, engineering and technology, and particularly suited to students from non-traditional education routes such as
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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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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 at Swansea has developed a multiscale platform that combines Monte Carlo simulation of...