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Location: Mechanical and Aerospace Systems Research Group, Faculty of Engineering, University of Nottingham Funding: UK Home fees + tax-free stipend of up to £25,000 p.a. for 4 years Applications
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machines can be designed and built with 3D architectures that enable significantly boosted electromagnetic, mechanical and thermal performance is yet to be developed. The project will motivate the PhD
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electromagnetic, mechanical and thermal performance is yet to be developed. The project will motivate the PhD student to revolutionise electrical machine design and development based on programmable 3D electrical
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DigitalMetal in the Faculty of Engineering, which conducts cutting edge research into cutting-edge technologies and AI to revolutionise metals manufacturing. Vision We are seeking a PhD student who is motivated
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travel. Requirements: The candidate should have a 1st or high 2:1 degree in electrical/mechanical engineering, physics, mathematics, or related scientific disciplines. Skills in numerical tools and
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candidate for a fully funded PhD studentship focused on the development of next‑generation bio‑based composite materials. This exciting project is delivered in partnership with SHD Composite Materials Ltd, a
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Background UK applicants are invited to undertake a 3-4 year, fully-funded PhD studentship (fees and enhanced stipend) within the Centre of Excellence in Coatings and Surface Engineering (CE-CSE
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2.1 class degree in materials/mechanical/manufacturing/physics or any related discipline. PhD dates: October-2026–September-2030. Main University Supervisor: Dr Chris Hyde Secondary University
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Thermally Sprayed Coatings for ablation and high heat flux conditions Background UK applicants are invited to undertake a 3-4 year, fully-funded PhD studentship (fees and enhanced stipend) within
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Start date: 1st October 2026 The University of Nottingham is seeking an outstanding and highly motivated candidate for a fully funded PhD studentship focused on the development of next‑generation