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industry-standard electromagnetic simulation software. Develop additively manufactured and 4D-printed antenna prototypes, including the preparation and optimisation of fabrication processes. Conduct
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and antenna components using industry-standard electromagnetic simulation software. Develop additively manufactured and 4D-printed antenna prototypes, including the preparation and optimisation
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electrolysers or fuel cells who can translate engineering concepts into working experimental systems. The role will involve device design and assembly, electrochemical performance and durability testing, process
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or fuel cells who can translate engineering concepts into working experimental systems. The role will involve device design and assembly, electrochemical performance and durability testing, process
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. The role will involve device design and assembly, electrochemical performance and durability testing, process development, and contributions to scale-up and system integration. You will work collaboratively
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reactions, catalyst surfaces and interfaces, reaction mechanisms, activity and selectivity develop reproducible atomistic simulation and high-throughput workflows using Python, ASE and relevant DFT software
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and complex system simulations develop, implement, test, and benchmark computational models, algorithms, data pipelines, and research software prototypes contribute to optimisation, simulation, sampling
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optimisation, hybrid quantum-classical modelling, simulation, probabilistic modelling, infrastructure systems modelling, or research software development ability to develop, implement, test, and benchmark
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optimisation, hybrid quantum–classical modelling, simulation, probabilistic modelling, infrastructure systems modelling, or research software development ability to develop, implement, test, and benchmark
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funding opportunities to build research independence. Key skills and experience required: A PhD in in physiology, exercise physiology, cardiovascular science, biomedical science or a related discipline