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holder will be required to have practical experience in high-density microelectrode pattern on soft substrates with good understanding of advanced microfabrication processes, electrode substrate
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hydrogen (H₂) production. Conventional thermal catalytic methods for H₂ production (e.g., steam reforming, water gas shift reaction) requires conditions of temperatures exceeding 500 °C and high pressures
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the transition to a full-time training model, and how these demands can be best managed to maximise adaptations and performance, and mitigate injury risk. The successful candidate will audit the current scientific
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A position exists for a Research Assistant/Associate in High TRL Aerothermal Testing at the Department of Engineering. You will join the growing National Centre for Propulsion and Power team, based
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that positively develop their workplace relations, environments, cultures, and behaviours. The successful applicant will work with sports coaches recruited from high performance sport, national governing bodies
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your area of specialist expertise and conduct high quality PhD research. Are able to communicate scientific concepts clearly and with enthusiasm and in a way that engages students Have good interpersonal
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embrittlement. However, the immiscibility between Cu and W leads to poor bonding, whilst during high temperature manufacturing/operation embrittlement of steel-W joints occurs due to the formation of brittle
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, balancing efficiency and sustainability in AI deployment poses a significant challenge, calling for advances in model design and training to reduce environmental impact while maintaining high performance
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mixture ratio has an impact on the performance of the hybrid propellant propulsion system making it hard to optimise. Work at Kingston University has been on the development of imaging techniques using
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://www.nature.com/articles/s41467-024-50598-1 ), (https://www.sciencedirect.com/science/article/pii/S0736584516300801 ). This research is driven by the need to perform repair tasks without disassembling industrial