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flight collaborating with leading aerospace companies. Work will include the development of a laboratory test system able of emulating arc faults, fault inception and propagation operating environments in
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resilience in complex and dynamic environments. Applicants should have, or expect to achieve, at least a 2.1 honours degree or a master’s (or international equivalent) in a relevant science or engineering
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scheduling under multi-objective KPIs (rate, latency, detection, localisation, etc.) Reconfigurable/programmable radio environments and system/network-level antenna design Theory with guarantees (convex/non
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packaging. Training and research environment The student will join a research group working across sustainable polymers, plastic recycling, polymer characterisation and data-driven materials analysis
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, such as reducing weight, operating in extreme environments, ensuring fault tolerance, optimising system operation and minimising energy use. These challenges drive the UTC’s activities. The University
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environment at the intersection of magnetism, spintronics, and unconventional computing. They will work closely with researchers across physics, materials science, and computer science, gaining experience in
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environment. Students will benefit from: dedicated cohort training and skills development networking and collaboration opportunities access to cutting edge facilities within the Henry Royce Institute, the UK’s
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for Advanced Materials at the University of Manchester. This is the largest light metals activity in the UK with a highly collaborative working environment that includes seminars, workshops, and social events