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analysis, threat modelling, and proof-of-concept demonstrations, the research will identify and map vulnerabilities that may impact both individual investors and global financial stability, as
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applicants with the opportunity to undertake an original multi-disciplinary impactful programme of applied research by working with heart failure patients, their clinical carers, and academic researchers. Core
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in collaboration with Cambridge Medical Technologies, ensuring strong translational impact and real-world relevance. The candidate will join Manchester Metropolitan University’s world-class
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Project advert The impact of alopecia is highlighted in the Global Burden of Disease estimates of years lost to disability, where alopecia areata (AA) was ranked higher than both psoriasis and
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needs, offering more personalised, accessible educational experiences. This study has the opportunity to make a significant international impact in the rapidly evolving HE landscape, by addressing key
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on understanding what is essential for multimodal learning when computation, memory, or energy are limited. Rather than scaling up models, the research aims to identify principled, lightweight methods
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about environmental sustainability, data-informed science, and greener urban futures, eager to contribute to world-leading research with real societal impact. Project aims and objectives This project aims
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Computer Science, Electrical Engineering, Cybersecurity, or a related discipline. Strong programming skills (Python or similar). Knowledge of AI/ML concepts and techniques. Understanding of cybersecurity
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, chemists and computational experts pioneering research using an advanced, optogenetically controlled human-based nerve-muscle model. Using functional, molecular and metabolomics technologies, integrated with
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to enhance patient engagement and programme design Funding Only Home students can apply. Tuition fees will be covered for the duration of the three-year award, which is £5,006 for the year 2025/26. The student