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of polycrystalline metals. The post holder will be located in Central Cambridge, Cambridgeshire, UK. The key responsibilities and duties include setting up the framework; validating the results using theory and
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the next generation of biopolymer that are naturally and sustainably sourced and with excellent post-use biodegradability profiles. The project goals will include (but necessarily limited to): Discovery
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embrittlement. However, the immiscibility between Cu and W leads to poor bonding, whilst during high temperature manufacturing/operation embrittlement of steel-W joints occurs due to the formation of brittle
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four years, alongside a Research Assistant salary for the full period. Please note that we are only able to cover fees at the UK student rate. This is a full-time post (35 Hours per week), and you will
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components with applications in the transport, catalysis and bioengineering industries. The research will focus on wet chemical processes and the study of chemical reactions on the component's surface. We will
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programme. Successful candidates are expected to participate fully in the academic life of the University. Remote-only arrangements will not be considered. Application Process To apply, please send
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, cylinders, shells and various prototype two-dimensional and three-dimensional geometries. Such systems have potential applications to sensors, photonics, metamaterials, and displays. Applicants should have
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). These materials have shown potential in enhancing tritium release from lithium-tritide (Li/LiT) mixtures. However, issues such as cracking and short-circuiting during prolonged operation at high temperatures hinder
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techniques, fabrication processes and methodology - Contribute to scientific talks, conferences, meetings, discussions and other group activities. The project will suit someone wishing to do a PhD in the
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new sustainable femtosecond laser nanomanufacturing process to overcome the challenges of atomic sale precision, feature size and defects rates for quantum dots. In this project, molecular dynamics