15 computer-security-"https:"-"https:"-"https:"-"https:" PhD positions at University of Birmingham
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This project will develop cutting-edge tools and methodologies to support the safe, efficient, and scalable manufacture of materials critical to the UK and European security, through the use of
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k Si3N4 and then the additive manufacturing of the components with the aim of achieving complex geometries with the enhanced ceramic. Funding notes: This PhD programme will be hosted in the School
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ready for further downstream magnet recovery processes. Who we are looking for A first or upper-second-class degree in an appropriate discipline such as, robotics, mechatronics, computer
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that will consider the electromagnetic aspects, through computer modelling and simulation, and then identify material systems that enable the design and manufacture of antennas for test and characterisation
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- or part-time research programme. This includes current doctoral researchers in the College of Arts and Law. The funding will be available from September 2026. One scholarship is available offering
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opportunity to deliver research with real-world impact, helping to secure critical materials for the UK while accelerating the transition to a low-carbon, circular economy. For any informal queries, please
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safety risks (toxic radioactive WO3 formation as an example). Therefore, separate effects study and combined synergistic studies are essential to map PFC performance and generate robust engineering
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mutations, and potential environmental-clinical links. Working in partnership with the UK Health Security Agency (UKHSA) and Environment Agency (EA), the project will provide insights to support environmental
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interactions into account with data-driven method. This research is inherently multidisciplinary, lying at the interface of fluid and solid mechanics, acoustics, and computing science. It will potentially
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the group of computational aerodynamics and aeroacoustics (CA^2) led by Dr Zhong-Nan Wang at the University of Birmingham. The CA^2 research group focuses on developing high-fidelity Computational Fluid