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Field
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of blades to discs using solid-state joining is a key factor in achieving cost-effective, high performance and low-weight fan and compressor stages in aero-engines. LFW is an established joining process
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an important part of a large international medical-device industry, creating substantial demand for new methods of obtaining physiological information accurately, continuously and with low-power sensing
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constraints into the theoretical analysis. Provide design guidelines for future experimental implementations of quantum repeater networks, specifying hardware requirements and performance benchmarks. Contribute
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contribute to the development and validation of computationally efficient motor-twin models for permanent magnet synchronous machines. The work will focus on machine modelling, parameter and state estimation
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are eligible to pay tuition fees at the Home rate are eligible to apply. The successful candidate will receive an annual tax-free part time stipend set at the UKRI rate (£13,200.80 for 2026/27) plus a salary
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each year A Research Training Support Grant to support additional training and research costs, such as courses, project costs, conferences and travel Part-time study at a minimum of 50% full-time
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About the role The Department of Social Policy and Intervention wishes to appoint two part-time Research Assistants (RAs) to work on a project related to economic and social inequality in high
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weapon against bacterial infections. These naturally occurring viruses selectively destroy harmful bacteria, offering hope where antibiotics fail. Yet a major challenge remains: how do we use phage
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combine bacterial genetics, genetic engineering and experimental phage biology to perturb host physiology and test causal mechanisms. The work will include constructing bacterial strains and reporters
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About the role We are seeking to recruit a highly motivated Research Assistant to join our team to work on a project titled "Direct Expression, Direct Effect: Functional Mapping of Druggable