21 postdoctoral-soil-structure-interaction-fem-dynamics PhD positions at University of Nottingham
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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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PhD project: 3D-Printing Devices with Responsive Structural Colour Applications are invited for a PhD project within the University of Nottingham’s Faculty of Engineering, in the Centre for Additive
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energy and aerospace solutions. In particular, surface-mounted permanent magnet electrical machines are pushing performance boundaries. A major challenge is the structural integrity of the carbon-fibre
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would then be correlated, using the synchrotron light, to structural, chemical and electronic changes in the single metal atom at different steps in the catalytic reaction. Using the synchrotron light we
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, usability, and insight into leakage dynamics across diverse constructions. Research Objectives The project is structured around three synergistic work packages: Descriptive Analytics: You will conduct a
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) are linear sugars that are displayed on all cells throughout the body as well as in the matrix. Like other glycans, they are not built against a defined template, and yet their structure is non-random, with
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, and materials science. PhD project description: Responsive 3D-printed functional devices interact with their environment, responding to stimuli (temperature, light, etc.), and “4D-printed” devices
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dynamic environments, including narrow spaces and interactions with unfamiliar objects. This project aligns with Rolls-Royce’s technical needs for developing soft robotic solutions to enable in-situ/on-wing
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. Hydrogen permeation barrier coatings for nuclear fusion and hydrogen energy applications. Using cutting-edge thin-film deposition and advanced microscopy, you will explore how nanoscale structures can
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for nuclear fusion and hydrogen energy applications. Using cutting-edge thin-film deposition and advanced microscopy, you will explore how nanoscale structures can transform performance in real-world