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Field
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, an exemplar of which is the anti-resonant fibre (ARF) structure, which can guide light in the air core using a variety of cladding architectures. Intriguingly, the high internal surface area presented by
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. And it still does. Realizing these potentials by way of research and development is one of the most important challenges in state-of-the-art biomedical engineering. Our research is focused
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at temperatures orders of magnitude below those of interstellar space and studying their magnetic, structural and electrical properties. As a student, unusually for the field, you will experience all parts
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Applications are invited for a PhD project within the Faculty of Engineering, in the Centre for Additive Manufacturing research group (CfAM, http://www.nottingham.ac.uk/research/groups/cfam
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professionally relevant background in mechanical/structural engineering or computational material science with a strong focus on mechanical properties. Your education must correspond to a five-year Norwegian
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work alongside a postdoctoral researcher that will focus on computational design of 3D reinforced printed structures. You hold a masters degree in a natural sciences or engineering discipline, with your
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of the structural and magnetic properties of the powders, in order to identify and therefore control the reactions which occur for the different constituent phases of this type of magnet. The powders obtained will be
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20 Mar 2024 Job Information Organisation/Company Institute of Electrical Engineering, Slovak Academy of Sciences Research Field Physics » Solid state physics Engineering » Materials engineering
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Funding providers: EPSRC iCASE and Airbus Operations Limited Subject areas: Experimental Mechanics, Digital Image Correlation (DIC), Mechanical Engineering, Aerospace Engineering, Materials
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techniques for automated phase analysis and structure determination Project leaders: Prof. Xiaodong Zou (main supervisor) and Dr. Gerhard Hofer (co-supervisor) Structure information is essential