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application development related to super-smart textiles and other wearable electronic technologies. This incorporates the user-centric design considerations, biomechanical aspects related to wearable sensing
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Durham University Business School invites applications for a funded PhD (UK/Home fees*) opportunity to investigate sustainable and inclusive space innovation for the burgeoning cislunar economy at
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investment programmes, Ofwat funded green economic recovery investments, and DEFRA funded innovation resilience programmes are also implementing these systems at scale. However, there is very limited
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, contributing over £149bn to the Gross Value Added of the UK economy, requires innovative method to accelerate the innovation pace and to enhance the corresponding sustainability profile. The aim of this project
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position, co-sponsored by Unilever, offers a unique opportunity to work at the interface of academic research and industrial innovation, shaping the future of Fast-Moving Consumer Goods (FMCG) formulations
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material and geometric design of these highly flexible structures is extremely challenging. A detailed understanding of HV loading and the corresponding mechanical strains and stresses is essential to ensure
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project focused on the development of Takenaka’s zero carbon building design strategy. The Takenaka Corporation is a leading general contractor in Japan that offers various services, including architectural
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PhD Studentship: Secure By Design Datasets – Distillation and Privatisation for Future Collaboration
researchers can struggle to find the data needed to train machine learning models. This project will develop an AI-driven “secure-by-design” approach to dataset privatisation and distillation, enabling
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installations. Building on these research and industrial successes, this project aims to design soft robotic systems capable of fast locomotion within aero-engines and operating end effectors for non-destructive
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haemodynamic performance and enable transcatheter replacements. However, designing these flexible structures is challenging. Understanding HV loading and mechanical strains is crucial to ensure device longevity