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Research theme: Materials 4.0 No. of positions: 1 Open to: UK applicants This 3.5-year project is funded by the School of Natural Sciences and is available for home students; the successful
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Fixed-term: The funds for this post are available for 12 months A position is available for a Postdoctoral Research Associate (Postdoc) in the forthcoming Aspirational Computing Lab in
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. The successful candidate will work on a Wellcome Trust-funded project that brings together the Karam Teixeira and Durbin groups to focus on dissecting how transposable elements shape the evolution of eukaryotic
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Tomography (CT) – two key NDT techniques used to inspect metallic and composite materials. These methods generate large 3D datasets that can be difficult for human experts to analyze manually, increasing
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framework for authenticity screening. Fast and cost-effective, these technologies generate detailed chemical fingerprints that can characterise the composition of foods and stymie the fraudsters. Key project
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of mechanical and robotic systems •Ability to use finite element modelling and to simulate complex mechatronics •Ability to implement control and kinematics with hardware-in-the–loop •Background with relevant
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“lattice” version of space and time, similar to the finite difference approach in computational fluid dynamics. Using this Lattice QCD method, Centre Vortex fields will be analysed to understand particles
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of the effective cooling systems. For example, cooled cooling air offers the opportunity to improve the fuel efficiency of future ultraefficient engines which are a vital component of the UK's strategy to achieve
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piezoelectric composites and material architecture to achieve improved electromechanical coupling and spatial resolution would be important. In addition, they should have experience in sensor array readout
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will have a key focus on exploiting and developing chemistry to obtain materials at the hundreds of gram scale. because it will allow transfer of these new biomaterials into formulation processing