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Failure Analysis of Composite Sleeves for Surface Permanent Magnet Electrical Machines This exciting opportunity is based within the Power Electronics, Machines and Control (PEMC) and Composites
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3-year PhD studentship: Scaling-Up Functional 3D Printing of Devices and Structures Supervisors: Professor Richard Hague1 , Professor Chris Tuck1 , Dr Geoffrey Rivers1 (1 Faculty of Engineering) PhD
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multi-scale shape changes, applicable to biomedical, micromechanical, or optoelectronic applications. Advantages: This studentship will take place in world-leading research laboratories for additive
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not contribute to the increase in Anti-Microbial Resistance (AMR). The project will have a key focus on exploiting and developing chemistry to obtain materials at the hundreds of gram scale. because it
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not contribute to the increase in Anti-Microbial Resistance (AMR). The project will have a key focus on exploiting and developing chemistry to obtain materials at the hundreds of gram scale. because it
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industrial process that underpins not only the supply of consumer goods, but also the scale of food production required to feed the billions of people on this planet. However, catalysis is challenging to study
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fit if you: Have a background in Biochemistry, biomedical sciences, organic chemistry and biophysics Are desire to explore the biochemical composition and biological activity of GAGs Are confident
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have access to world-class laboratories, industrial-scale deposition systems and unique characterisation facilities. With a strong track record in energy innovation and industry partnerships
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of Nottingham, EPSRC and industry) will provide a multi-disciplinary approach to training researchers in new technologies that can significantly improve the incorporation of solar farms into future sustainable
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laboratories, industrial-scale deposition systems and unique characterisation facilities. With a strong track record in energy innovation and industry partnerships, the University of Nottingham provides