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materials modelling, with the goal of uncovering the fundamental structure–property relationships that govern material performance. You will be based 50% at the University of Birmingham in the Materials
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We invite applications for a fully funded PhD studentship (3.5 years) hosted by the University of Birmingham and conducted in collaboration with the UK Met Office. This project is ideal for
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the UK Health Security Agency (UKHSA). This studentship is funded by the NIHR as part of EPR-HPRU between the University of Birmingham and UKHSA. In addition to the extensive training offered to all PhD
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to modulate pathological cell behaviour in vitro, with potential for progression to in vivo testing in a rodent model of glaucoma. Candidate Profile Applicants should hold (or expect to obtain) a 1st or 2:1
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Environmental Sciences at the University of Birmingham. The supervisory team includes experts from both the University of Birmingham and Birmingham City Council. A broad range of training and professional
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group based in brand new state-of-the-art Chemistry laboratories at the rapidly growing University of Birmingham. **NOTE** Applications must be made through the university’s on-line application system by
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spectroscopy and HPLC), organic synthesis, electrochemistry, hydrogel soft matter and modelling. You will be mentored by Dr. Maguire and will learn how to design and manage projects, how to conduct research, how
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source, has implications for heat network demand and electricity network demand. To model the implications of widespread adoption of new technologies, requires new demand profiles which these networks will
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A funded 3.5-year UK PhD studentship is available at the University of Birmingham with a tax-free stipend. The project is co-funded by Tokamak Energy and in collaboration with the Electric Power
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the University of Birmingham. We are looking for a highly talented and dedicated PhD student with a 1st class or upper 2:1 degree in the field of transport studies, civil engineering, mathematics, social science