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mechanisms, while at the macro scale, the engineering issue is to develop an efficient system for integrating these metamaterials with several engineering applications. Metamaterials derive their properties
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View All Vacancies Engineering Location: UK Other Closing Date: Tuesday 20 August 2024 Reference: ENG1775 Project background: Polycrystals are the building blocks of numerous materials around us
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Science and Techology (iCASE), with sponsorship from BAE Systems Ltd. Waste heat surrounds us; from car exhausts to fridges, and even yourself. This otherwise untapped energy source can be harnessed
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of imaging technology for material characterisation. The Faculty of Engineering provides a thriving working environment for all PGRs creating a strong sense of community across research disciplines. Community
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Structural materials in nuclear power plants are commonly operating at elevated temperatures in aggressive local environments and complex mechanical stress conditions. The upper temperature limit
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the conventional approach in materials science to have a designer concept based on structures, they are often static in functionality or having a limited degree of tunability. To address this limitation, the PhD
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X-ray Scatter Tomography (ST) is emerging as a powerful imaging technique with implications for biomedical, security or material characterisation applications. It is based on detecting scattered
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progress in the targeted area of quantum storage technologies, new materials and/or processes need to be created or found. Therefore, the proposed project aims to: (i) find the most promising compounds
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awarded a first class or 2.1 honours degree (or equivalent if from other EU countries) in materials science, chemistry, physics, chemical engineering, mechanical engineering, manufacturing, or a relevant
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suitable for applicants with a high level degree in Physics, Chemistry or Materials Science, ideally with some prior experience in quantum chemistry or solid state electronic structure calculations