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Magnox and AGR decommissioning, while also understanding the graphite materials that may underpin future advanced modular reactor technologies. This PhD will form part of the EPSRC-funded ENLIGHT programme
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, curious, and self-motivated candidates with (or expecting) a strong undergraduate or Master's degree in physics, engineering, applied mathematics, materials science, computer science, or a related
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of full-time study. Eligibility: This studentship is available to home students only. The candidate should have a good 2.1 Bachelors, or Masters degree in Engineering, Computational or Physical Sciences
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a key challenge in sustainable process engineering: translating microbial electrolysis cell (MEC) technology from lab-scale innovation to robust, industrial deployment. The research will sit at
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these findings in a real-world ecological context. The student will gain a broad skill set, including behavioural tracking, microbial manipulation, chemical analysis (GC-MS), molecular biology, and
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biology, AI guided protein engineering and chemical analysis, you will establish the molecular basis of REE binding and discrimination in naturally evolved lanthanophores, establishing the ‘rules’ of REE
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combining molecular genetics, cell biology and biochemistry to dissect calcium signalling and decoding mechanisms in the liverwort Marchantia polymorpha. The Norwich Research Park Biosciences Doctoral
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AstraZeneca and Newcastle University , will develop predictive models for pharmaceutical manufacturing and provide access to industrial data and high-performance computing facilities. You will gain expertise
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identify your programme of study: Search for the ‘Course Title’ using programme code: 8020F Research Area: Biological Sciences Select ‘PhD Biological Sciences’ as the programme of study. You will then need
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, or physics. Prior experience in microstructural characterization, computational modelling, or metal forming is advantageous but not essential. Enthusiasm and willingness to learn are more important