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Field
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XID+ to exploit the hyperspectral imaging and spectroscopy that PRIMA will provide. You will develop methodologies to separate blended galaxy emission, test them using state-of-the-art galaxy evolution
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characterisation, while integrating polymer chemistry, nanotechnology, and dynamic performance analysis to develop next-generation elastomers for sustainable mobility. Candidates with experience in chemistry
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expected to develop their knowledge of international environmental law. It is not necessary for the candidate to have prior training in development studies, government, business or economics as any relevant
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measures by focusing on dialogue understandability: how well listeners comprehend narrative content without excessive effort. Research aim and objectives The project will develop a listener-aware framework
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of research with a continuous programme of practical skills training in semiconductor science, engineering and technology, and particularly suited to students from non-traditional education routes such as
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on such jets — although their detailed properties remain unexplored. In this project, we will develop new computational methods to compute and characterize these novel wave solutions, with particular emphasis
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publication pipeline with a clear candidate role and deliverables, Team-based supervision and transparent shared responsibilities, aligned with recognized principles of quality doctoral education, Ongoing
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alongside co-development workshops that will be conducted at the start of the programme. Initially, you will iteratively co-develop both patient and healthcare professional information and materials relevant
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Principal supervisors: Dr Thomas Bestwick-Stevenson (School of Medicine), Teaching Associate – [email protected] Professor Kimberley Edwards (School of Medicine, Professor
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to develop new sustainable processes to make a range of chemicals, allowing us to move away from crude oil as a precursor of products such as plastics, fuels, and pharmaceuticals. One way to achieve this is