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Early integration of sensors for efficient SHM of aerostructure during their service. Using a mix of reactive machines and limited memory this project develops new fuzzy logic based artificial intelligence (AI) algorithms for SHM system integration. The research will focus on early...
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-vibration problems came to light, indicating that modern, light-weight, low-frequency and lightly-damped structures have to be designed with new standards, grounded on a theoretical framework for human
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remained unclear for decades, and thus design principles for discovering new thermal battery materials have been lacking. In this industrially sponsored PhD studentship, we have partnered with AWE to fund a
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information yielded by this study will allow us to develop design principles for new Na-ion battery cathodes with improved electrochemical performance. Promising candidates will be experimentally tested through
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Funding providers: EPSRC and STRIP5 Prosperity Partnership Subject areas: Photovoltaics, Perovskites, Module design, Engineering Project start date: 1 October 2024 (Enrolment open from mid-September
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design, Engineering Project start date: 1 October 2024 (Enrolment open from mid-September) Supervisors: Professor Trystan Watson ([email protected] ) Dr Eifion Jewell Dr David Beynon Aligned
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at the interface between science frontiers and technological and medical applications. The project will suit an excellent student who enjoys design, practical experimental work, computer modelling and innovative
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Applications are invited for doctoral level research into sustainable manufacturing operations and management. More specifically, the candidate will undertake research activities into eco-design
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brands and sports federations, including Adidas, PING, Head, FIFA, Wattbike, England & Wales Cricket Board, New Balance, Nike, UK Sport, Reebok, Speedo, and others, in the design, simulation, testing, and
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develop innovative solutions and technologies. This studentship, supported by a BAE Systems - EPSRC CASE Award, focuses on the design and development of a novel electric actuator. The successful candidate