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), The University of Manchester at Harwell, and the Engineering & Physical Sciences Research Council-funded Henry Royce Institute for Advanced Materials. Prior experience in additive manufacturing, welding, and
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in order to investigate, analyse, and understand the fundamental instability mechanisms and the parameters and conditions that affect them. It will also investigate ways to ensure safe use of data
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the quality of recycled materials, particularly polyolefins. Based at the University of Manchester and delivered in collaboration with the National Physical Laboratory (NPL) and Waters-TA Instruments
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-field methods) Multiscale mechanics and microstructure-property relationships Python/C++/Matlab-based simulation and data analysis Industry-facing research and technology transfer You will also benefit
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at the University of Manchester's Hydrodynamics Lab, https://www.scieng.manchester.ac.uk/tomorrowlabs/manchester-hydrodynamic-lab/ . This research aims to provide a comprehensive characterisation of offshore
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Research theme: Textiles How to apply: https://uom.link/pgr-apply-2425 How many positions: 1 This 3.5 year PhD project is funded by The University of Manchester and an industrial partner and the
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. The PhD position will be based within the Department of Materials, Department of Chemical Engineering and University of Manchester-Harwell campus. This will facilitate research activities with the national
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? During the PhD, the student is expected to interact with academics across different departments from the University of Manchester, e.g. Offshore Renewable Energy Group, the Hydrodynamics Lab, as
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of Mechanical and Aerospace Engineering and is available to UK students. The successful student will receive an annual tax free stipend set at the UKRI amount (£20,780 for 2025/26) and tuition fees will be paid
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sustainable healthcare, healthy aging, and inclusive design, and offers a unique opportunity to contribute to socially impactful innovation in biomedical materials and wearable technology. At The University