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-packed arrangements such as face-centred cubic or hexagonal structures. Such morphologies limit the diversity of lattice symmetries and electronic couplings that can be realised in QD solids. This PhD
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2025/26) per year, subject to satisfactory progress. Lead Supervisor’s full name & email address Dr. Diana Ivanova - D.Ivanova@leeds.ac.uk Co-supervisor name(s) & email address(s) (optional) Dr. Pepa
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@bristol.ac.uk ) 4th Supervisor: Professor Jenni Barclay (J.barclay@bristol.ac.uk ) Applications are invited for a fully funded three years PhD studentship. The studentship will start on 1st January 2026
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PhD Studentship: Revolutionising Litz Wire Development for Next Generation Ultra-High Speed Propulsion Motors The Manufacturing Technology Centre UK, and University of Nottingham This project offers
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PhD Studentship: Carbon Nanotube (CNT) Winding Development for Electric Motors The Manufacturing Technology Centre UK, and University of Nottingham This project offers an exciting opportunity
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Area Engineering Location UK Other Digital-Twin Technology to Accelerate Development of Electric Propulsion Systems This exciting opportunity is based within the Power Electronics, Machine and
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Fully Funded PhD Research Studentship tax-free stipend of £20,870 Design, Informatics and Business Fully Funded PhD Research Studentship Project Title: Profiling hardware and feasibility of new
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on previous interventions of pneumonia. Who is this PhD suitable for? This PhD is suitable for a hard-working researcher with an interest in respiratory infections and health economics. Essential skills: A
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Step 1: Submit your application to the QBS PhD programme via the QUB portal and enter the code QBSPGR2025/26 in the funding section: 🔗 myportal.qub.ac.uk Step 2: Email the following documents to Louise
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why they are applying to be part of this PhD programme and what they believe they can offer to: neil.nixon@nottingham.ac.uk . The email subject line should be: “MHM PHD APPLICATION”. Candidates should