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) in a project on exploration for Red Sea hydrothermal vent fields. The Red Sea Rift hosts some of the world's largest known submarine hydrothermal systems and metalliferous sediment deposits, but active
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researcher to work on the geology, tectonics, geochemistry and geochronology of these systems, who takes ownership of their work. The project will involve fieldwork, including detailed geological mapping, and
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, encompassing organic and polymer chemistry, membrane science and engineering, and electrochemistry and electrochemical engineering. Drawing on these complementary specialisms, we focus on the function-led design
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integrate complex flow on Discrete Fracture Networks (DFN). The objective of this project is to develop a tool to generate DFN models amenable for multiphase flow, and scale up the model to be usable with
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, programming, and connecting accelerators to enhance performance, latency, and efficiency in emerging applications. Our current projects are exploring hardware acceleration in smart NICs, application-specific