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This exciting fully funded PhD, with an enhanced stipend of £24,000 per annum, will focus on the application of nanobubbles to support waste management at the UKs designated nuclear waste management
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for enthusiastic, inquisitive and motivated researchers with a strong interest in aerospace systems engineering to develop innovative solutions and technologies. This is a BAE Systems - EPSRC CASE Award
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Manufacturing and Materials Sectors for 2050 by applying fundamental science and thought leadership via conceiving and maturing the concepts of Smart, Clean and Green manufacturing solutions agnostically across
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, the technology developed here could be easily adapted for aerospace and thermal power applications. You will work in a multidisciplinary environment consisting of material scientist, chemists, engineers
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, technology and management expertise. We link fundamental materials research with manufacturing to develop novel technologies and improve the science base of manufacturing research. The Sustainable
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expertise. We link fundamental materials research with manufacturing to develop novel technologies and improve the science base of manufacturing research. The Sustainable Manufacturing Systems Centre (SMSC
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, Materials Science/Engineering, Aerospace Engineering, Physics, Chemical Engineering or related discipline. The candidates should be self-motivated, have good communication skills, and an interest in
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roadmaps, including the technology lifecycle and reliability management framework. At Cranfield University, you will be based within the Manufacturing and Material theme at the Centre for Digital Engineering
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. The manufacturing capability is world leading and combines a multi-disciplinary approach that integrates design, technology and management expertise. We link fundamental materials research with manufacturing
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An exciting PhD studentship opportunity fully-funded by the Engineering and Physical Sciences Research Council (EPSRC) Doctoral Training Partnership (DTP). This project would suit students with a