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. Predicting key physical and mechanical properties of marine sediments—such as shear strength, stiffness, and density—is central to designing offshore infrastructure, influencing foundations, anchors, cable
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Geological Survey, Centre for Ecology and Hydrology, the Natural History Museum and Plymouth Marine Laboratory. The partnership aims to provide a broad training in earth and environmental sciences, designed
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/environmental assessment. This is a co-created project with PuriFire Labs Ltd , ensuring practical relevance. The student will also work closely with our industrial partner on process engineering for a scalable
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metamaterials of various shapes, materials and textures and model their interaction with the upcoming waves. In the end, this project enhances our knowledge of PBs and provides practical solutions in their design
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. Predicting key physical and mechanical properties of marine sediments—such as shear strength, stiffness, and density—is central to designing offshore infrastructure, influencing foundations, anchors, cable
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, and materials scientists. Applicants should have completed (or closer to completion) their undergraduate degree in Physics, Material Science, Physical Chemistry or related Physical Sciences (preferably
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scientists. Applicants should have completed (or closer to completion) their undergraduate degree in Physics, Material Science, Physical Chemistry or related Physical Sciences (preferably with first-class
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Qualification: Doctor of Philosophy in Engineering (PhD) Eligibility: UK Students, EU Students, International Students Award value: Home fees and tax-free stipend - See advert for details Project
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air quality attributable to COVID-19 lockdowns’, Science Advances, 7(3), p. eabd6696. Mazzeo et al (2022) ‘Modelling the impact of national vs. local emission reduction on PM2.5 in the West Midlands, UK
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potential requires detailed emissions accounting for retrofit and operational phases (Shibata, Sierra and Hagras, 2023). Retrofit involves materials like heat pumps, insulation, and ventilation, which