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apply: send covering letter, CV and academic transcripts by email to Geoffrey.Rivers@nottingham.ac.uk . Applications without academic transcripts will not be considered. Please refer to the project title
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possess or expect to obtain, a 2:1 or first-class degree in Engineering, Chemistry, or related physical sciences related discipline. To apply: send covering letter, CV and academic transcripts by email to
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by email to Geoffrey.Rivers@nottingham.ac.uk . Applications without academic transcripts will not be considered. Please refer to the project title in your application. Applications will be evaluated
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PhD Studentship: Dissecting the Molecular Architecture and Function of LMTK3 as a Therapeutic Target
Black and other ethnic minorities – who are under-represented in postgraduate research at our institution. For enquiries about the application process, please email Emma Chorley: lifesci-rec@sussex.ac.uk
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characterised by using advanced high resolution electron microscopy. The relationship between the fabrication process parameters and the microstructure of the alloys will be investigated. The assessment
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prehistoric explosive eruptions, such as St Vincent, Dominica and Montserrat. Use standard petrological analysis, together with Scanning Electron Microscopy (SEM)and Electron Backscatter Diffraction (EBSD
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energy levels and size-tuneable optical and electronic properties. QDs can self-assemble into larger, ordered structures analogous to atomic crystals. However, these are typically restricted to close
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, analytical and computer programming skills. Advantage will be given to applicants with experience in one or more of the following: signal processing, deep learning, acoustics, psychoacoustics, acoustic
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for a full time PhD in Engineering (SEP2025) using our step-by-step guide . For project-specific queries, please email y.petrov@sussex.ac.uk . For general application queries, please email
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simulations and finite element analysis, with high-heat flux electron beam experiments. The research will simulate and replicate steady, cyclic, and transient thermal loads to better understand PFM behaviour