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that predict Litz wire behaviour across electrical, thermal, and mechanical domains. Supported by the MTC’s advanced wire braiding platform, the PhD work will pave the way for next-generation ultra-high speed
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microstructure exhibiting improved physical and mechanical properties. The main objective of this project will be to develop a mechanistic understating of the microstructural evolution of the Additive
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structural molecules. Unravelling the ways in which these motifs are encoded into GAGs by their biosynthetic machinery is the fundamental challenge behind the GlycoWeb project and this PhD will focus on a
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home or international students) fully funded. A competitive Tax-free annual stipend for 3 years Requirements The candidate should have a 1st class degree (BEng or MEng/MSc) in electrical/mechanical
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or international students) fully funded. Competitive Tax-free annual stipend for 3 years. Requirements The candidate should have a 1st class degree (BEng or MEng/MSc) in electrical/mechanical
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gross salary) for 3 years An additional £2,000 per annum for consumables and travel Requirements The candidate should have a 1st or high 2:1 degree in electrical/mechanical engineering, physics
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, control, and manufacturing problems in real-world applications. We are seeking talented candidates with: •First or upper second-class degree in mechanical, mechatronics, robotics, cybernetics or related
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Manufacturing and On-Wing Technology, (http://www.nottingham.ac.uk/utc ), Department of Mechanical, Material and Manufacturing Engineering, Faculty of Engineering. The department has an excellent international
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second) in maths, physics, computer science, electrical and electronic engineering, mechanical engineering or social science disciplines looking for a challenging research project in an interdisciplinary
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interest in the linkage between the environment and fertility and the mechanisms involved. An underexplored element of male reproduction concerns the elasticity of the sperm cell membrane. Normal sperm