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and studded footwear. It will also provide excellent employment opportunities to the researcher. Aims: (1) to enhance current traction testing methods to better reflect player boot-surface interactions
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engineering. Expertise in numerical tools (Ansys, JMAG, .etc) and programming are desirable. Experience in electrical machine prototype development would be advantageous. Eligibility and Application
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This PhD project will focus on the development of scalable and sustainable dielectric deposition processes tailored for WBG semiconductors, with an emphasis on interface engineering to optimise
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requirements: First-class or upper second-class degree (or equivalent) in Chemical/Process/Electrochemical/Mechanical/Electrical Engineering, Chemistry, or Physics, or relevant industrial experience
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application, please contact: Dr Peter Shaw p.shaw@kingston.ac.uk and/or Dr Kevin Munisami j.munisami@kingston.ac.uk Eligibility: Minimum Upper Second Class degree in Electrical or Electronic Engineering
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have a 1st class degree (BEng or MEng/MSc) in electrical/mechanical engineering. Expertise in numerical tools (Ansys, JMAG, .etc) and programming are desirable. Experience in electrical machine
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engineering. Expertise in numerical electrical machine design tools (Ansys, JMAG, .etc) as well as corresponding scripting skills are desirable. Experience in electrical machine prototype development would be
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of Electrical Engineering, School of Electrical, Electronic and Mechanical Engineering, University of Bristol This project is funded as part of the REWIRE IKC. The studentship provides funding for tuition fees
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science or engineering related discipline. Experience with experimental campaigns would also be desirable. To apply please contact the supervisor: Dr Hannah Mullings, Prof Tim Stallard and Dr Samuel
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density. We are interested in evaluating what is possible with current Li-ion technology, going beyond current cable/braiding designs to explore approaches to solid state electrolytes (polymer or ceramic