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paid. We expect the stipend to increase each year. Only Home students are eligible for funding. The start date is October 2026. The project aims to develop and optimize metal oxide aerogel materials
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programming experience (preferably in Python). If English is not your first language, provide evidence of proficiency through: A minimum IELTS average score of 6.5 and a minimum of 6.0 in each component. OR A
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of marginalised communities through documents, interviews, and focus groups to understand their views on health data governance. Additionally, you will also be responsible for managing some organisational elements
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and training activities that will contribute to developing professional networks. Understanding the growth of surface oxide films on/in multi-component metallic substrates in electrolyte media is of
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or international equivalent, in Statistics, Mathematics or a related subject with a strong statistical component A relevant Master’s degree is advantageous. Applicants whose first language is not English require
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testing. We aim to develop next generation electrochemical energy technologies through holistic views of ammonia/methanol fuel cells and metal and metal ion (Li, Na, Ca etc.) batteries, from the nanoscale
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of the effective cooling systems. For example, cooled cooling air offers the opportunity to improve the fuel efficiency of future ultraefficient engines which are a vital component of the UK's strategy to achieve
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partner Tata Steel UK. The project aims to advance fundamental knowledge on the impact of residual elements inherited from steel scrap on slag performance and utilisation in the scrap-based electric arc
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) to characterise the lithic component of these events. Eligibility Applicants should have a first or upper second class honours degree in Geology/Earth Sciences or a similar subject and/or a relevant Masters
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. The successful candidate will work on a Wellcome Trust-funded project that brings together the Karam Teixeira and Durbin groups to focus on dissecting how transposable elements shape the evolution of eukaryotic