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integration in the broader analytical sciences. 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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to achieve, at least a 2.1 honours degree or a master’s (or international equivalent) in a relevant science or engineering related discipline To apply, please contact the main supervisor, Dr Thomas McDonald
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the Electrical Power group. You will have the opportunity to contribute to other, strategic EPSRC projects such as the Supergen Energy Networks Hub and Energy the Demand Research Centre . Other collaboration and
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-funding/tuition-fees/fee-status/ . Eligibility: You must possess (or expect to gain) a First class honours MEng/MSci or higher degree or equivalent in Aerospace or Mechanical Engineering. Students recruited
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solutions that extend the operational life of devices and reduce environmental impact, applicable to areas like smart grids, electric vehicles, and portable electronics. Research Focus Areas: Power-Aware
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for understanding natural magmatic processes on earth & other planetary bodies. Neutron diffraction is a powerful technique for studying the atomic scale structure of these materials, but the current technology to
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the identification of topologies and technologies that can support current and future geared architectures. Within this context applying Model Based Systems Engineering principles for defining requirements and
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Faculty of Engineering and Physical Sciences EPSRC Project Proposals 2025/26 (jobs.ac.uk) Project Link: Stress modulated antiferromagnetism in a BiFeO3-based thin film | Project Opportunities | PhD
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should have or expect to achieve at least a 2.1 honours degree in materials science/engineering, metallurgy, physics, chemistry, or a related subject. To apply, please contact the main supervisor, Prof
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) can we use mathematics to engineer the next generation of LC applications? We will partially address these open questions in this project. We propose to design and analyse new sophisticated multiscale