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in vivo models to replicate disease. We are particularly interested in the effects of exercise on the development of bone lesions, and the potential role played by mechanosensitive osteocyte cells in
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:38183983) using cutting-edge genomics technologies (https://www.biorxiv.org/content/10.1101/2024.12.20.629444v5) to provide core knowledge for development of new therapies and management strategies for PPK
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within theoretical physics, including knowledge of quantum field theory, effective field theory and gravitational waves. They should be enthusiastic about contributing to the continuing development
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in silico models to replicate disease. We are particularly interested in the effects of exercise on the development of bone lesions, and the potential role played by mechanosensitive osteocyte cells in
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applicants will lead a project focused on leveraging exciting newly developed experimental tools, including novel CRISPR-dCas9 epigenetic screens and cerebral organoid co-culture systems applied to patient
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, access to a generous pension scheme, 30 days’ leave per annum (pro-rata for part-time/fixed-term), a season ticket loan scheme and access to a comprehensive range of personal and professional development
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Trust-funded project on Plasma-Assisted Combustion (PAC) Modelling of Ammonia, in collaboration with the York Plasma Institute. The successful candidate will develop and apply advanced computational
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About the Role You will contribute to the construction and quality control of the ATLAS Inner Tracker (ITk). The ITk group at Queen Mary University of London has played a key role in the development
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are committed to mentoring, scientific growth, and helping researchers achieve their career ambitions. Impact: Your work will directly contribute to developing therapeutic strategies for rare insulin receptor
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, access to a generous pension scheme, 30 days’ leave per annum (pro-rata for part-time/fixed-term), a season ticket loan scheme and access to a comprehensive range of personal and professional development