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PhD Studentship–Computational Design of Solid-State Battery Materials Award Summary 100% home tuition fees covered and a minimum tax-free annual living allowance of £19,237 (2024/25 UKRI rate
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is hampered by the reduced efficiency compared to traditional transformers, further reduction in volume not being possible due to limitations in existing materials, and numerous design challenges
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Supervisory Team: Dr. Andrea Da Ronch Project description Applications are invited for a Ph.D. studentship on Aircraft State Modelling & Separation for Fatigue Design. The scholarship is funded by
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: In the Environmental Planning Pathway: Designing serious games to inform land use decisions for net zero in Wales (in collaboration with Natural Resources Wales and Welsh Government). The Supervisory
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strong background in the design, synthesis, optimisation and application of advanced functional materials for energy conversion and storage. The research group has specific interests in multiscale
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of photonic qubits is the capability to generate large numbers of single photons with identical quantum properties. Increasing the level of indistinguishability of single photons optically requires designing
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productively, independently and collaboratively as part of a diverse team. Desired Qualifications: Hands-on experience with optical and scanning electron microscopy. Hands-on experience with designing and
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academics at the University of Manchester and experts in the application of robotic systems at Jacobs, and they will all contain a significant focus on the design and development of practical robotic
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(Impact and Partnership Development Manager) INTERNAL APPLICANTS ONLY Exeter Innovation This part time (0.2 FTE) post is available from 1st May 2024 until 31 March 2025. Summary of the role You will
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students through: Plan the most relevant learning programmes and schemes of work Plan individual lessons and activities to ensure full coverage of the learning objectives of the syllabus to meet every