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Field
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within integrated motor drives demands innovative design and manufacturing solutions. Advanced additive manufacturing techniques will be explored to improve thermal management across the entire system. 3
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drives demands innovative design and manufacturing solutions. Advanced additive manufacturing techniques will be explored to improve thermal management across the entire system. 3. Electromagnetic
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be removed once the position has been filled. This fully funded PhD explores AI-native and sensing-aware wireless systems where communications and sensing are co-designed end-to-end. You will unify
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electric machines for future defence and aerospace propulsion systems. The research will explore innovative machine topologies and advanced multi-physics design methodologies to enable electric machines with
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of vision systems and AI techniques for perception, decision-making, and control, enabling robots to operate reliably in complex agricultural environments. The research will involve design, experimentation
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lifetime under realistic operating conditions. The research will support improved insulation design and qualification for reliable next-generation electric motors, contributing to safer, higher-performance
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an annual tax free stipend set at the UKRI amount (£20,780 + Tuition fees for the 2025/2026 academic year). The design of next-generation engineering materials is undergoing a paradigm shift, driven by
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examine similar unorthodox approaches to health in the 20th and/or 21st Century are encouraged. While we encourage candidates to design their own programme of research, possible foci for the PhD studentship
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the nature of arc initiation & propagation and how arcing can be managed through system design or operation, with a view to retaining functionality when these occur and minimising their likelihood. This is
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are accompanied by discussion or interventions designed to encourage change in behaviours, if this would be affective or how received by those planning parenthood. This ethnographic PhD study will investigate