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Primary supervisor - Dr Thomas Anthony Haynes Pellet-clad interaction (PCI) is a complicated phenomenon, relatively poorly captured in current commercial fuel performance codes. Models have been
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agricultural systems (TIFs) across contrasting environmental and agroclimatic contexts. The PhD will address questions about tree–water interactions, including: How does tree morphology and canopy structure
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tree–water interactions, including: How does tree morphology and canopy structure influence water use? How do tree traits interact with tree density, configuration, soil and climate to determine water
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investigations and geochemical modelling. Specifically, you will: Characterise variability in mineralogical and petrophysical properties resulting from fluid–rock interactions under representative reservoir
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complex interactions between geology, fluid flow and water–rock reactions. Changes in pressure, temperature and fluid chemistry during production and reinjection can promote mineral dissolution and
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that communicate dynamically in specific tissue niches. Our laboratory has an interest in resolving the interactions between tissue-resident immune cells, with the overall goal of identifying key mechanisms that can
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The GW4 BioMed3 Doctoral Landscape Programme is offering up to 18 MRC funded studentships across a range of biomedical disciplines, with a start date of October 2027. These four-year studentships
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regulatory networks in myeloma. The aim of this PhD programme is to 1) identify gene regulatory networks altered in multiple myeloma and 2) Map key TF-coactivator interactions and dissect their functional
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4-year PhD fellowship in the Research Programme - Deep Learning-Accelerated Crystallography Pipeline
determination by developing mathematical methods and integrating machine learning into crystallographic workflows. The successful candidate will develop theoretical and computational approaches to improve
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of the process, process stability and the interaction between the part and the tooling. This project will develop the fundamental understanding of the thermo-mechanical effects and material flow within the high