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— positioning you for careers in academia, research, or high-value industries. Join us to explore how microstructure shapes performance and help drive the future of sustainable turbine technologies. Applicants
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materials will be designed for two game-changing applications: 1. High-performance electrical insulation for next-generation electric machines and power electronics used in transport and energy systems. 2
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biology: Do independent mimicry rings rely on the same genes to produce colour patterns, or are there different solutions each time mimicry evolves? Research Methodology You will work with existing high
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invite applications for a limited number of fully funded PhD studentships at the School of Physics, Engineering and Computer Science of the University of Hertfordshire. This is an exciting opportunity
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and develop an improved design and maintenance framework for long-term performance and climate resilience. The project will assess the influence of various slope drainage systems on pore pressures
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, or expect to shortly graduate with, a very good undergraduate or master’s degree (at least a UK 2:1 honours degree) – or an equivalent international qualification from a high ranking university – in a
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-changing applications: High-performance electrical insulation for next-generation electric machines and power electronics used in transport and energy systems. Hydrogen permeation barrier coatings
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levels of Cu, Mo, Ni & Sn. Direct comparisons will be made with experimentally identified phases from high throughput samples. Subsequent characterisation will be performed using a combination of scanning
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-value reinforcements in their short and randomly aligned form. A key challenge to the effective reintegration of recycled carbon and glass fibres into high-performance products lies in achieving scalable
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materials for low-emission ammonia conversion. Perform both experimental investigations and computational simulations of the combustion process. The outcome of this project will demonstrate the feasibility