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and Britain are world leaders and major exporters. This high technology global industry is worth more than £30 billion per annum. Current challenges are arising from the need to address environmental
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honours degree or a master’s (or international equivalent) in a relevant science or engineering related discipline. Experience with experimental campaigns would also be desirable. To apply please contact
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early as the advert may be removed before the deadline. High-dimensional computations are ubiquitous in science and engineering, often arising from models with numerous parameters. For instance
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the advert may be removed before the deadline. Engineering plastics are embedded in every facet of our lives from the automotive sector to construction and electrical goods due to their superior thermal
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issues in the engineering analysis and design of floating wind applications. Over time, these subsea cables become coated with soft and hard biofouling – marine organisms that increase drag, weight and
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chlorination to convert metallic impurities into volatile chlorides. The process efficiency, however, depends on a complex interplay of particle-scale interactions and particle/solid body interactions. Current
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over conventional single-rotor designs. However, MR technology is still in its infancy, and hence many interesting research and engineering questions remain to be answered to demonstrate the true
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of PFAS (per- and poly-fluorinated alkyl substances) sonolysis. This project will aim to engineer and test a new approach that compliments current work by the group with industrial relevance. Sonolysis via
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tools that push the boundaries of experimental biosciences (if the candidate has experience or interest in robotics or electrical engineering). Potential project extensions include applying these skills
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projects for sustainable, intelligent, and climate change-resilient infrastructure slopes. Current earthworks assessment remains largely based on visual inspection of the surface. Subsurface deterioration is