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facilities, such as x-ray synchrotron light sources. This is an exciting opportunity to work with internationally recognised experts in the fields of neutron and x-ray scattering, high-temperature and glassy
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optimal operating conditions and followed by surface analysis techniques (e.g. Scanning electron microscope, X-ray diffraction for residual stress measurements, Electron Back-Scattered Diffraction and
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the conventional manufacturing process of advanced aerospace materials but also the state-of-the-art materials investigation such as scanning electron microscope (SEM), X-ray diffraction (XRD), electron backscatter
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of NottinghamCountryUnited KingdomCityNottinghamGeofield Contact City Nottingham Website http://www.nottingham.ac.uk/ Postal Code NG7 2RD STATUS: EXPIRED X (formerly Twitter) Facebook LinkedIn Whatsapp More share options E
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@nottingham.ac.uk ). [1] L. Huang, S. Zhang, T. Zentgraf, "Metasurface holography: from fundamentals to applications," Nanophotonics 7, 1169 (2018). [2] X. Zou, G. Zheng, Q. Yuan, et al., "Imaging Based on Metalenses
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@nottingham.ac.uk ). [1] L. Huang, S. Zhang, T. Zentgraf, "Metasurface holography: from fundamentals to applications," Nanophotonics 7, 1169 (2018). [2] X. Zou, G. Zheng, Q. Yuan, et al., "Imaging Based on Metalenses
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research area, and work alongside your peers for the first 10 weeks of your studies, splitting your time between high-level training and laboratory rotations. You will also take part in a three-month
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Net Zero 2050 goals, electric motors must undergo a transformational leap—from today’s typical power densities of 2–5 kW/kg to a step-change 10–25 kW/kg by 2035. The highest power dense motors today