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the scientific analyses of glass, including compositional analysis using techniques such as SEM-EDS and LA-ICP-MS, an ability to thrive as part of a diverse team and a willingness to contribute
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the scientific analyses of glass, including compositional analysis using techniques such as SEM-EDS and LA-ICP-MS, an ability to thrive as part of a diverse team and a willingness to contribute
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nanoparticles, new formulated lipid nanoparticle compositions, efficiency of epidermal and dermal cell targeting in vivo, and the long-term therapeutic implications for skin homeostasis and wound healing. Through
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formulated lipid nanoparticle compositions, efficiency of epidermal and dermal cell targeting in vivo, and the long-term therapeutic implications for skin homeostasis and wound healing. Through
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expected to be in post by 1st July 2025, or as soon as possible thereafter. The postholder will work on developing and implementing models of structured electrodes, in which the local composition (active
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& Composites Laboratory: https://eng.ox.ac.uk/mmclab/) in the Department of Engineering Science at Oxford University. The posts are funded by the ERC Advanced Grant “TEGMOF” (UKRI Horizon Europe Guarantee) and
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, in which the local composition (active material, binder, etc) and overall microstructure is controlled to vary spatially within the electrodes. These models will then be used to find a design that
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project team consisting of four other PDRAs and several PhD students, academic leads from University of Reading, University of Oxford and Northumbria University, as well as project partners including
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leading the EPSRC programme grant ULTRAlGaN on developing vertical solid state circuit breakers using high composition AlGaN materials and the Chair in Emerging Technologies awarded to Professor Kuball
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materials. This role is focused on research to characterise the thermal properties of a range of advanced ceramics materials including SiC-based composites, porous ceramics and Ga2 O3 materials before and