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. This will be achieved by combining advanced constitutive models that capture the rate-dependent (creep and porewater pressure) response of sensitive clays with erosion models enabling system-level studies
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work. A model is to be developed to estimate the material mass breakdown for various cell designs and cell formats. The model will be validated from teardown analysis of commercial lithium-ion battery
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materials for synthesizing different types of hydrogen storage molecules. Using advanced quantum mechanical calculations, you will develop multi-scale models to study reaction kinetics and improve catalyst
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fundamental understanding with advanced modelling and testing capabilities, applied to real-world engineering challenges. We are internationally recognised for our expertise in experimental testing and
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environment. This is an opportunity to combine field work and desktop analyses to advance the understanding of how shipping impacts the marine environment. The research will inform competent authorities on how
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140 PhD students at CSE. Your main supervisor will be Prof. Nir Piterman, with support from a co-supervisor and an examiner. Supervision is structured to guide your academic development, with regular
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We are looking for a PhD student to join our cutting-edge research in nanoelectronics for terahertz applications. You will explore advanced semiconductor devices and circuits, shaping the future
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, and fellow PhD students Take advanced-level courses within the Graduate School of Shipping and Marine Technology , specializing in Maritime Environmental Science Contribute to departmental teaching