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interests within the broad themes of geographies of work, community and social change. Any training will be supported through the University of Exeter’s Researcher Development Programme, with opportunities
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addresses this gap by developing a bespoke single-player physics sandbox to validate aerodynamic projectile trajectory variations. This sandbox, and the data it produces, will be used to establish a novel
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nitrogen fixation operates in nature and represents a potentially transformative step in the evolution of cellular complexity. This PhD will investigate how the nitroplast functions, how it is maintained
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profiles, and how improved burden estimates could inform FSA’s response to rising Campylobacter trends and threshold exceedances. Training: You’ll develop advanced analytical skills e.g. multivariate
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predicting this behaviour from ‘first principals’. The development of a modelling technique that is capable of capturing these phenomena using a ‘bottom-up’ approach, based only on local material structure
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of the sector, it contributes a staggering £142bn (GVA) to the UK economy each year. There is a growing shift in the sector towards the rapid development of smarter, greener, and more personalised products. This
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ownership of the project, shaping experimental design, developing new approaches, and driving the research with increasing independence. By integrating laboratory, analytical, and field-based methods
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a mastication study with human participants and develop new approaches to simulating bolus structures in the laboratory. You will then use established digestion models to study nutrient release from
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evolution in Miscanthus hybrids, and to investigate how regulatory, epigenetic, and structural mechanisms contribute to the balance or dominance among subgenomes. Miscanthus is a notable bioenergy crop
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professional development and research skills through a comprehensive training programme. You will join a vibrant community of world-leading researchers. All NRPDTP students undertake a three-month professional