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of Oxford. The post is funded by the National Institute for Health and Care Research (NIHR) and is fixed term for 24 months. The researcher will develop multi-sensor 3D reconstruction algorithms to fuse
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be a part of the project to explore Character Strengths in neurodivergent children and young people (ND CYP), with the aim of improving our understanding of how to adopt strengths-based approaches when
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31 September 2028) in association with a new Faraday Institution-funded project entitled “Accelerated Development of Next Generation Li-Rich 3D Cathode Materials (3D-CAT)”. You will have a PhD (or be
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and develop new scientific techniques to visualise macrophage innate signalling (focus on inflammasome signalling) using microscopy and the latest biochemical techniques as well as develop 2D and 3D
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The Faraday Institution has funded a new research consortium project entitled “Accelerated Development of Next Generation Li-Rich 3D Cathode Materials (3D-CAT)”. This collaborative project between
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. This work will complement 3D plume modelling conducted by a second postdoctoral researcher in Edinburgh, as well as fieldwork conducted by the whole team. The laboratory experiments conducted in Oxford will
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their electrical charge, size and 3D conformation with unprecedented precision, one at a time and in real time (Nature, 2010; Nature Nanotechnology, 2012, 2017; Science 2025). The experimental approaches
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the interfacial strength, nano-scale 3D structure and residual stresses in advanced power electronic materials (INTERVENE), and is fixed-term of 18 months. Power electronics is a major technology sector for the UK
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a project that to work with neurodivergent children and young people, their families, and educators to develop a neurodiversity-affirming toolkit to explore children’s character strengths, abilities
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neurodivergent children and young people, their families, and educators to develop a neurodiversity-affirming toolkit to explore children’s character strengths, abilities, and potential across contexts. Embedding