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Join us in the University of Exeter’s Centre for Metamaterials Research & Innovation – the heart of the UK Metamaterials community. You’ll be part of the £20 million EPSRC MetaHUB – the UK’s largest
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this PhD will address. This project will develop a direct ammonia solid oxide fuel cell (SOFC) technology for efficient and carbon-free heat and/or power generation. By using a novel catalyst design strategy
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research and innovation. The postholder will make a substantive contribution to the design, conduct, analysis and dissemination of research within the project, working with the Principal Investigator and
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active involvement in innovative trial delivery within Infectious Diseases and Pandemic Preparedness research. The successful applicant will contribute to the design, delivery and development of multi
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). Working in the Faculty of Health and in partnership with Carl Zeiss AG and the ZEISS Innovation Hub, the successful candidate will gain interdisciplinary training spanning clinical vision science
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, and manufacturing. By providing empirical evidence rather than purely theoretical assurances, the project will support regulators, system designers, and security engineers in making informed deployment
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project. We are seeking a part-time researcher to lead and deliver the Liverpool strand of the project. The role will involve the CFD modelling a new super critical CO2 heat exchanger design. You will work
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properties data to hence facilitate a more reliable and application-ready cryo-fuel pump design. The work will include detailed constituent material property characterisation in representative cryogenic
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humidity ranges. By exploiting advances in materials design, it is possible to tailor ionic transport properties while maintaining structural integrity under demanding electrochemical environments
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simulations, and design your own PRIMA observational programmes. The project will also make use of current world-leading facilities including JWST, Euclid, ALMA, Herschel, and SCUBA-2. By combining these with