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academic CV, detailing your education and qualifications; employment history; publications; and any other relevant information. You must nominate two academic referees (including one from your most recent
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the outcome to applicants by May 2025. Unfortunately, we are unable to provide feedback on individual applications, as outcomes are determined by independent panels. Deferral information Offers of funding
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distinct imaging methods to yield a novel imaging method that combines the benefits of both. The aim of this project will be to develop a novel method for fusing the data obtained by x-ray imaging and MIS
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generated high-fidelity LES datasets. These datasets, produced under a parallel investigation, will provide detailed flow and temperature information for a geometry representative of a pebble-bed HTGR core
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applications, as outcomes are determined by independent panels. Deferral information Offers of funding are not deferrable. If you cannot start your programme by the date mentioned in your studentship offer
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feedback on individual applications, as outcomes are determined by independent panels. Deferral information Offers of funding are not deferrable. If you cannot start your programme by the date mentioned in
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application will be rolled forward to stage 2. Unfortunately, we are unable to provide feedback on individual applications, as outcomes are determined by independent panels. Deferral information Offers
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certain speed. Beyond such a speed, the size of the predicted sub-synchronous oscillation (limit cycle orbit) causes the solution to diverge. On the other hand, test data for turbomachines using AFBs show
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programme +2 - covering 2 years of study for current postgraduate researchers 1+3 - covering Master's and Doctoral study Please see Additional Information for 1+3 and +2 application processes. Tenable period
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experimental and modeling approaches. Experimental investigations will be conducted at the University of Manchester, utilizing established rigs to simulate a spectrum of conditions, from single-phase heat