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analyse the behaviour of individual animals under natural conditions are therefore vital not only for fundamental research to understand why animals behave in the ways they do, but also for applied work
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of the Great Western Four alliance of the University of Bath, University of Bristol, Cardiff University and the University of Exeter plus five Research Organisation partners: British Antarctic Survey, British
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operators in a cycle of designing bespoke, inflexible models. Large Language Models (LLMs) represent a paradigm shift, offering a path to a more sustainable and intelligent approach. Their emergent
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PhD Studentship: Distributed and Lightweight Large Language Models for Aerial 6G Spectrum Management
of this project will contribute to achieving the UK’s "Connected Nation" ambition by advancing the integration of LLM in 6G systems. Three cooperative Work Packages (WPs) are envisioned to achieve the research aim
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of the Great Western Four alliance of the University of Bath, University of Bristol, Cardiff University and the University of Exeter plus five Research Organisation partners: British Antarctic Survey, British
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of the Great Western Four alliance of the University of Bath, University of Bristol, Cardiff University and the University of Exeter plus five Research Organisation partners: British Antarctic Survey, British
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of the Great Western Four alliance of the University of Bath, University of Bristol, Cardiff University and the University of Exeter plus five Research Organisation partners: British Antarctic Survey, British
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of the Great Western Four alliance of the University of Bath, University of Bristol, Cardiff University and the University of Exeter plus five Research Organisation partners: British Antarctic Survey, British
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of the Great Western Four alliance of the University of Bath, University of Bristol, Cardiff University and the University of Exeter plus five Research Organisation partners: British Antarctic Survey, British
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improved hydraulic performance and pollution capture and reduced blockage risk, the research will enhance the efficiency of urban drainage systems and help mitigate flooding and pollution impacts