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partnership with the Royce Institute and Cummins, you will study the microstructure of nickel-based alloys used in turbine wheels — vital components for hydrogen-ready engines and future power technologies
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bipolar electrochemical test method. This high-throughput set-up allows to assess the effect of applied potential and/or current gradients on the dissolution of surface passive films. The key idea here is
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been filled. Electrical treeing is a primary degradation mechanism in polymer insulation leading to the ultimate failure of high-voltage (HV) cables. Despite being a phenomenon first observed and studied
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alternatives. Yet, large-scale commercialisation of bioplastics faces environmental and economic challenges. Current feedstocks pose trade-offs: edible crops such as maize and sugarcane raise food security
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). Preference will be given to candidates with a background in electrical engineering and a strong interest in undertaking experimental activities. The candidate is expected to have regular meetings with Siemens
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or engineering related discipline. To apply please contact the supervisor, Dr. Jane Wood - jane.wood-2@manchester.ac.uk . Please include details of your current level of study, academic background and
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(or international equivalent) in a relevant science or engineering related discipline. To apply please contact the main supervisor; william.fitzgerald@manchester.ac.uk. Please include details of your
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, biology or engineering related discipline. To apply, please contact the main supervisor: Prof Jian Lu - J.Lu@manchester.ac.uk . Please include details of your current level of study, academic background and
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prosthetics. The project will be supervised by Prof. Sarah Cartmell, Prof. Julian Yates, and Dr. Jose R. Aguilar Cosme at the University of Manchester. While prosthetic materials continue to evolve, current
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a highly motivated candidate with: A first-class or upper second-class degree (or equivalent) in Materials Science, Chemistry, Physics, Chemical Engineering, or a related discipline. Experience in