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- Curiosity and motivation to work on the proposed or related research questions. The studentship is supported for 3.5 years and includes full Home tuition fees, Bench fee plus a Stipend of £21,805 per annum
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on selected real-world healthcare applications. Why Apply? Conduct high-impact research in AI system acceleration. Collaborate with AMD engineers, gaining valuable industry experience. Work on cutting-edge
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@plymouth.ac.uk ) Applications are invited for a 3.5-year EPSRC funded UDLA PhD studentship. The studentship will start on 1st October 2026. Project Description Offshore wind turbines operate in highly non
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transcript if you are still studying). Contact information for two referees familiar with your academic work and/or job experience. No research proposal is required for this application. The closing date
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energy research, combining laboratory experimentation, computational modelling, and data analysis. Experimental work will be carried out in the world class COAST laboratory, examining floating offshore
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Description This exciting PhD project offers the opportunity to work at the forefront of biomedical engineering, developing the next-generation technologies to revolutionise long-term heart monitoring. You will
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multiple scales. Building on recent work that applies TDA to anatomical MRI, this project will extend these approaches to functional near infrared spectroscopy (fNIRS)—a portable, low cost technique
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in MS and better assessment of disease progression. This PhD project will explore feasibility and acceptability of home monitoring of vision in MS. Our work will contribute to the evidence-base
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Nanomaterials and Devices Laboratory at the University of Plymouth is leading research on precision impedance based molecular detection methodology and multiplex electronics that enables multiple protein
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research has been conducted on cancers (other than brain cancers). There is a need for a non-invasive treatment for pancreatic cancer. The pancreas is very difficult to operate on because of its position in