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on a programme of research leading to the award of an MRes or doctoral degree are NOT eligible to apply for funding. Applicants who hold or who are registered on a taught Master’s degree are eligible
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or undergraduate degree with a psychology component (e.g. health studies, sport and exercise science) Good interpersonal skills Experience of qualitative methods Experience of or interest in community projects
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hold an MRes or a doctoral degree or who have been registered on a programme of research leading to the award of an MRes or doctoral degree are NOT eligible to apply for funding. Applicants who hold or
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, occupational therapy, physiotherapy, sport and exercise science) Good interpersonal skills Experience of qualitative methods An interest in music Essential criteria Applicants should hold, or expect to obtain, a
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on the degradation of CECs in PEC reactors at lab scale. In this research we aim to investigate the engineering design of PEC reactors for scale up for the removal of CECs from wastewater effluent as a potential
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intraoperative feedback on these risks. The project will combine biomedical engineering, signal processing, and clinical collaboration to design a non-invasive ultrasound monitoring system capable of quantifying
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of the core business of built assets (e.g. hospitals) in integration with the engineering systems to achieve Low Carbon and Net Zero targets. This will create a new concept for developing inDTs which combines
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reinforcement in both the site of the insertion of the tufting yarn and between the tufts, whereas z-pinning does this at the site of insertion. 3D wovens involve layering and interweaving fibres in a computer
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Development of smart clothing for physiological monitoring of children with heart conditions at home
technology into smart textiles, with design suitable for wear by small infants. Monitoring will track breathing, heart rate, arrythmias and oxygen levels to provide clinical feedback and parental reassurance
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research methodology is coupled CFD (Computational Fluid Dynamics) and FEM (Finite Element Method) modelling and simulations. This is the only methodology allowing simulations of fluid-structure interaction