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assessing sustainable routes for large-scale removal of greenhouse gases from the atmosphere. As well as interact with others in this programme within the duration of the post, and the results of the PDRA
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We are seeking a talented and motivated researcher to join the Mead Group to contribute to a major research programme focused on characterisation of in vivo models of myeloid neoplasms and
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We are seeking a talented and motivated researcher to join the Mead Group to contribute to a major research programme, focused on understanding and preventing disease progression in
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-Cardiovascular Medicine provides a vibrant and dynamic environment for researchers, offering state-of-the-art facilities and a multidisciplinary team approach to cardiovascular research. This opportunity is
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fluid flow and combustion, to work within the planned programme of research. Informal enquiries may be addressed to Dr Martin Davy (email: martin.davy@eng.ox.ac.uk) For more information about working at
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focuses on understanding how tumour cell plasticity and dynamic cell state transitions drive resistance, and aims to identify actionable vulnerabilities that could inform future therapies. You will work
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computational resources that are needed, but also because it is prone to undetermined error propagation and validation and because it is intertwined with multi-scale, turbulent dynamics. Reliable experiments
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applications. In this role, you will take the lead on an independent project within our broader research programme. Your work will centre on identifying and characterising novel regulators of the immune response
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-market approaches, and cultural, financial, and power dynamics that hinder transformation, contributing to high-impact academic outputs and practical solutions. Working closely with the Fellow and other
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in cilia. Transport within cilia, the cell’s signalling and sensory antennae, is central to human biology. It enables these cell-surface organelles to assemble and dynamically change their proteome in