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distribution, as well as active components along the line, such as heat exchangers and valves. Understanding and predicting the hydrogen flow and thermal behaviour is essential before such systems can be
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sustainably for production of fuels, electricity, heat and biomaterial. The department and involved researchers have extensive experience in doctoral education and supervision. More information about the
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, the student will systematically evaluate stimuli known to trigger plating, including cycling rate, negative-to-positive (N:P) electrode capacity ratio, and low-temperature operation, generating quantitative
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a mixture of computational, analytical and machine learning approaches to model the heat transfer to fuels and their physical and chemical behaviour, including changes in chemistry and physical
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facilities (high temperature experiment, advanced characterisation and modelling) at the ASRC of WMG, the University of Warwick. This PhD studentship also offers a unique opportunity to work with the leading
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that provide direct optical access to spin-physics and offer a tunability approaching that of cold-atom simulators. The Quantum Opto-Electronics Group (QOEG; https://smolenski-lab.com ), led by Prof. Dr. Tomasz
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staff of around 120, including 66 permanent staff. It has a strong experimental component, with numerous prototype set-ups supported by both standard equipment and high-tech instrumentation
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materials for hydrogen energy applications. Hydrogen is considered as a clean alternative to fossil fuels in heat and electricity production. However, significant knowledge and technical gaps must be
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PhD Position in Engineering Materials Project: Development and Characterization of Advanced Sorbents
broad research areas in metallic and ceramic materials (high-temperature intermetallic, space materials, high-strength steels, porous ceramic materials, and materials intended for energy recovery
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nanometer-scale measurement of electrical potentials, magnetic fields and carrier dynamics with high temporal resolution, in projection and in three dimensions under external stimuli. The position is embedded