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develop and evaluate computational methods for modelling patient-specific aortic and valvular haemodynamics. The position is funded until March 31st 2028 in the first instance, and available immediately
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Full time: 35 hours per week Fixed term: for 36 months Posts available: 2 The Opportunity: This project aims to (1) understand the fluid dynamics of small-scale processes in the Arctic Ocean that
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develop and evaluate computational methods for modelling patient-specific aortic and valvular haemodynamics. The position is funded until March 31st 2028 in the first instance, and available immediately
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to developing vaccines during a pandemic. The Nuffield Department of Orthopaedics, Rheumatology and Musculoskeletal Sciences (NDORMS) is part of the Medical Sciences Division and is the largest European academic
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excellence. Our research plays a key role in tackling many global challenges, from reducing our carbon emissions to developing vaccines during a pandemic. The Nuffield Department of Orthopaedics, Rheumatology
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of the Oxford Martin Programme on Geological Hydrogen, an interdisciplinary initiative investigating whether stimulated geological hydrogen can provide a low-cost, low-carbon and socially responsible
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at the University of Oxford. You will work with Professor Claire Nichols and Professor Chris Ballentine as part of the Oxford Martin Programme on Geological Hydrogen, an interdisciplinary initiative investigating