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discovery are strongly encouraged to apply. You will work within a highly collaborative, interdisciplinary environment that brings together expertise in chemistry, physics, and computer science. Success in
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chemistry, physics, and computer science. Success in this role requires the ability to engage effectively with colleagues from diverse backgrounds and career stage. If you are still awaiting your PhD to be
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expertise in chemistry, physics, and computer science. Success in this role requires the ability to engage effectively with colleagues from diverse backgrounds and career stage. If you are still awaiting your
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discovery of a superionic lithium ion conductor (Science, 2024, 383, 739). You will work within a highly collaborative, interdisciplinary environment that brings together expertise in chemistry, physics, and
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physical vapour deposition, and associated patterning techniques. The project aims to deliver step-changes in imaging resolution and enable functional imaging capabilities, such as probing local
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will also investigate process optimisation algorithms, providing a route toward autonomous optimisation and ultimately enabling long term stable operation under variable load conditions. This post is
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-catalytic reactors and integrated processes, as well as the synthesis and characterisation of catalytic materials. The role will focus on reactor engineering, process intensification, and system integration
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. The post will be based in the Department of Physics and in the Stephenson Institute for Renewable Energy, with occasional national and international travel to state-of-the-art facilities and conferences. You
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Hours of work: Full-time Tenure: Fixed term until July 2028 This is an exciting opportunity to contribute to a collaborative Engineering and Physical Sciences Research Council (EPSRC)-funded project