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‑temperature operation. These features make HPCRs attractive for demanding applications including space power and exploration missions, remote/off‑grid energy supply, industrial heat, and resilient electricity grids. In
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. Historically, two industrial scale powder processing routes have been used to manufacture MOx fuel materials, the micronized master blend (MIMAS) developed by Belgonucleaire and utilised in the Orano MELOX fuel
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that you apply early as the advert may be removed before the deadline. Catalysis underpins over 90% of chemical manufacturing processes, and the selective transformation of waste and low-value feedstocks
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photosensitiser; however, enantioselective versions of these processes remain elusive. Inspired by these studies, we will design photoenzymes to catalyse the 4-pyridination of benzylic Csp3–H bonds. To achieve
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to deliver high-temperature, low-carbon energy for applications beyond electricity generation, and building on the UK’s extensive experience of gas-cooled reactor operation. HMG has selected
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crystal MOF stimuli responsive transformations at the surface to gain unprecedented nanoscopic insight into the mechanism of such processes in the bulk and at the surface, including kinetic and energetic
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turbine energy yield, operation point and foundation costs. However, such predictions are complicated by disturbances to the mean- and unsteady-flow introduced by the presence of other turbines. This issue
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, with direct industrial relevance to consumer product formulation and process optimization. This project aims to enhance the accuracy of surfactant behaviour predictions by integrating molecular dynamics
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. Their performance, however, is strongly influenced by microtexture, crystallographic orientation clusters that develop in the material during processing. Controlling microtexture is critical for improving mechanical
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(the extracellular matrix). The mechanical behaviour of these materials is heterogeneous, complex and diverse and it is only by means of predictive mathematical modelling that the underlying processes that govern