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operation of autonomous systems in complex, real-world conditions. This PhD project aims to develop resilient Position, Navigation and Timing (PNT) systems for autonomous transport, addressing a critical
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, tangible impact. This project focuses on the Futamura cellulose-to-cellophane production site in Cumbria , where you will develop strategies to reduce energy use and transition towards Net Zero operation
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existing models struggle to capture this complex, multiscale phenomenon efficiently. This project will develop a novel, physics-informed surrogate model using Bayesian machine learning to predict gas
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in electromagnetism, transport properties, phase transformations, and sensing science, and who wish to develop expertise that is both intellectually deep and highly transferable across materials
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contact form the PGR Office within 4 weeks of submission please assume we have been unable to support your application at this stage. Harper Adams University is one of the premier UK Higher Education
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phase forms. We will investigate which organic solute is best at preventing third phase formation. Finally, we will develop new molecular thermodynamic models to describe third phase formation. These will
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consumption, and radioactive waste arisings. This research will develop techno-economic models quantifying the TES capacity required to buffer HTGR output against realistic UK industrial heat demand profiles
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) at the University of Nottingham, funded by the UK government. There is a critical need to develop materials and coatings that can withstand ultra-high temperature (UHT) conditions while maintaining structural
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moisture risks, directly affecting children’s health, wellbeing, and learning outcomes. This PhD will develop evidence-based, Passive House–informed retrofit strategies tailored to diverse school typologies
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laboratories and cleanroom facilities. Gain experience by attending international conferences and training events. Develop skills highly valued in both academia and industry. Project description Vision