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Experimental low-temperature physics involving nanofabrication, high pressure measurements, extreme magnetic field and milliKelvin temperatures to tune exotic low dimensional materials. Hands
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technology. Funding notes: A 3.5-year PhD studentship is available in the fusion materials group of Prof. Enrique Jimenez-Melero within the School of Metallurgy and Materials at the University of Birmingham
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This project is an exciting opportunity to undertake industrially linked research in partnership with the Manufacturing Technology Centre (MTC). It is based within the Birmingham Institute
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, materials science, environmental engineering, or a related field - Strong laboratory skills and an interest in sustainable construction technologies - Experience with cementitious materials, durability
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interest in healthcare, sustainability and whole systems thinking who: Have a first or upper-second-class degree in an appropriate discipline such as engineering, materials science, physics, chemistry
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This project will develop cutting-edge tools and methodologies to support the safe, efficient, and scalable manufacture of materials critical to the UK and European security, through the use of
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of Metallurgy & Materials at the University of Birmingham (UoB), UK and is an exciting opportunity to undertake industrially-linked research in partnership with the Manufacturing Technology Centre (MTC). This
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group with structured training and strong technical support. 2. Candidate profile This project is ideal for candidates from Mechanical, Electrical, Biomedical, Materials Engineering, or related
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Chemistry, Chemical Engineering, Materials Science, Physics or similar. The candidate will be provided with training to undertake this interdisciplinary research. The successful candidate will be based in
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experimentally. Quantum magnets are simple quantum-mechanical model systems realised in real materials. They typically consist of networks of electronic spins arranged in well-defined geometries, such as chains