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, well known to successfully impart long term shelf stability. Successful advancement of the sustainability of emulsification technology (process and ingredients) will require meeting the droplet size
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4-year Computational Project to use state-of-the-art Computational Chemistry techniques to understand structure-property relationships in thermal batteries, and to derive new understanding to guide
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of state-of-the-art Computational Chemistry techniques, and you will extend the boundaries of computational materials design through the combination of cutting edge electronic structure simulation techniques
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mechanical effects to the domain of 2D materials and comprise exciting new building blocks for exotic new quantum engineering. These are unique and exotic among an already fascinating materials family, with
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will develop a wide range of knowledge and skills in Colloidal and Interface Science, Tribology, and establish a broad appreciation of Formulation Engineering. They will build a portfolio of
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Would you like to continue your academic journey with a PhD in Aerospace Engineering? A 3.5-year fully funded PhD studentship for UK home students and EU students with settled status is available in
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Would you like to continue your academic journey with a PhD in Aerospace Engineering? A 3.5-year fully funded PhD studentship for UK home students and EU students with settled status is available in
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Join the College of Engineering and Physical Sciences at the University of Birmingham for groundbreaking PhD research that aims to improve quantum technologies! Metamaterials, which are artificially
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a collaborative network of experts in the field. In this 3.5-year Computational Project you will build a strong foundation in the use of state-of-the-art Computational Chemistry techniques, and you
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Energy Park. Requirements: Applicants should have a first-class degree or good 2:1 (or equivalent) in Energy Engineering, Mechanical Engineering, Electrical Engineering, Computer Science or a related field