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brand new state-of-the-art Chemistry laboratories at the rapidly growing University of Birmingham. Please visit our group website for more details about our research: http://davidscanlon.com
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the group of Dr. Chandan Bose within the Aerospace Engineering division, School of Metallurgy and Materials, College of Engineering and Physical Sciences at the University of Birmingham. We invite
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. The successful applicant should have or expect to achieve at least a 2.1 honours or equivalent at Bachelors or Masters level in Chemistry, Physics, Materials Science, or a related discipline. The successful
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the group of Dr. Chandan Bose within the Aerospace Engineering division, School of Metallurgy and Materials, College of Engineering and Physical Sciences at the University of Birmingham. We invite
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transferrable skills such as project management, communication, team working, which ensures an excellent employability upon completion of the project. If you have a background in Chemistry, Physics, Material
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state-of-the-art Chemistry laboratories at the rapidly growing University of Birmingham. Please visit our group website for more details about our research: http://davidscanlon.com/ Applications must be
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, at the project’s dedicated contact email: [email protected] . The School of Metallurgy & Materials at the University of Birmingham is committed to promote diversity, equality and inclusivity within our
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present in the TBM. Amongst those candidate materials for structural TBM components, Reduced Activation Ferritic Martensitic (RAFM) steels stand out as frontrunner candidates, due to their resistance
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to their enhanced resistance to radiation-induced void swelling, as compared to face-centred cubic materials, and to their high-temperature mechanical strength. In particular, the aim of the tritium breeder module is
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consortium of Arizona State University, University of Adelaide, University of Toronto, and within the UK, Universities Cranfield, Birmingham, Cambridge, Imperial College London, and Newcastle. The HyPT will