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fundamental materials science and industrially relevant battery manufacturing and recycling technologies. The outcomes of this research will contribute to the development of sustainable battery value chains
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An investigation into the interface material layer created during linear friction welding of Titanium alloys. Applications are invited for a PhD position at the University of Nottingham addressing
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An investigation into the interface material layer created during linear friction welding of Titanium alloys. Applications are invited for a PhD position at the University of Nottingham addressing
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to how well they meet the following criteria: A first class (or strong 2:1) degree in any of Engineering, Materials Science, Computer Science, Physics, Biology/Biotechnology, Chemistry/Biochemistry
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and characterisation of new inorganic, hybrid and core-shell materials, with applications in electromagnetic shielding. The successful candidates will join a world leading group in materials discovery
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experience in cleanroom microfabrication, actuator design and characterisation, finite element modelling, rheology, ex vivo tissue methods and cell culture. You will work across engineering and life sciences
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, applied physics, or a closely related subject. You should enjoy building things and be prepared to work across mechanics, materials and electronics. Experience with microfabrication, finite element analysis
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of new and improved thermal battery materials. The successful applicant should have or expect to achieve at least a 2.1 honours or equivalent at Bachelors or Masters level in Chemistry, Physics
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such as electrical and electronic engineering, mechatronics, physics, materials science, mechanical engineering, aerospace engineering, or a closely related subject. A strong background or relevant
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From electric vehicles to grid-scale energy storage, the future of clean energy relies on breakthroughs in battery technology. This PhD will develop cutting-edge terahertz spectroscopy methods