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and Nano Systems at the University of Edinburgh, which is funded by Engineering and Physical Sciences Research Council and in collaboration with colleagues at Universities of Glasgow, Heriot-Watt and
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at the University of Edinburgh, specifically within the soft matter group. In this post you will experimentally investigate the rheology and microstructure of filled colloidal gels relevant for personal care
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at the University of Edinburgh, specifically within the soft matter group. In this post you will experimentally investigate the rheology and microstructure of filled colloidal gels relevant for personal care
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technologies, by bringing most up-to-date bioscience and engineering together, so off-grid systems are configured with confidence. The project at the University of Edinburgh specifically addresses a pressing
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led by Prof Bruce Whitelaw and Dr Tom Burdon at University of Edinburgh (Roslin Institute) and Prof Ramiro Alberio at the University of Nottingham. The team’s expertise in genetic engineering, stem cell
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may be directed to [email protected] . Parts of this role can be carried out remotely, however onsite work is required at the University of Edinburgh. The post is 17.5 hours per week, which can
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thereafter. This advert might close once a suitable candidate is found. Please apply as soon as possible to avoid disappointment. Further Information: The University of Edinburgh is committed to equality
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of Edinburgh and Virginia Tech, funded by Engineering and Physical Sciences Research Council (EPSRC). Therefore, the project will not only forge an experimental framework in understanding the fundamental
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various chemical additives, dyestuff, pharmaceuticals as well as the precursor of photo initiator. However, in the conventional process, the synthesis of above-mentioned C-C coupling products focuses
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at the University of Edinburgh, and co-advised with Dr Farid Shahandeh at the Royal Halloway University of London on a project titled “Resource frameworks for secure quantum computing and quantum