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, rapid characterization of biomass feedstocks for advanced bioenergy applications. Aim The project will leverage historic work which considered both the direct liquefaction of solid fuels, and the
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covering the Home tuition fees and UKRI stipend. The University actively supports equality, diversity and inclusion and encourages applications from a broad range of applicants. The Faculty of Engineering
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science and its application to real-world technologies. This project aims to redefine how dielectric failure is understood and controlled, introducing a new architecture-led design approach rather than
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behaviour. The successful applicant will be based at the University of Nottingham and spend time annually at UKAEA Fusion Technology Facility in Yorkshire, working with the Thermal Hydraulics Group to support
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equality, diversity and inclusion and encourages applications from all sections of society. The Faculty of Engineering provides a thriving working environment for all PGRs creating a strong sense of
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the UK Atomic Energy Authority (UKAEA). The student will be based at the University of Nottingham, but should expect to engage fully with the 3-month full-time training programme in the Fusion Engineering
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programming are desirable (MATLAB, python, C++ etc). Any experience or capabilities in engineering design or manufacturing methods would be advantageous. Eligibility and Application Due to funding restrictions
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tuition fees and UKRI stipend) The University actively supports equality, diversity and inclusion and encourages applications from all sections of society. The Faculty of Engineering provides a thriving
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of Engineering which conducts cutting edge research spanning exploration to translation, with curiosity driven projects all the way through to application in the clinic. Vision We are seeking PhD student that is
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and toxicity performance make them strong candidates for safety‑critical applications in aerospace, rail, automotive and battery technologies. However, current PFA systems suffer from brittleness