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This exciting fully funded PhD, with an enhanced stipend of £21,000 per annum, will investigate resource recovery opportunities from sewage sludge with dark fermentation as core enabling technology
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. This PhD studentship is within the Propulsion Engineering Centre at Cranfield University, in the field of helicopter-engine propulsion integration. The work will aim to develop and apply design capability
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Fibre reinforced composites have excellent in plane strength and stiffness and are being used in increasing quantities in aerospace, sports, automotive and wind turbine blade industries. However fibre reinforced composites are weak in their through thickness direction. This weakness can result...
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Current gas turbine engines use hydrocarbon fuels, such as kerosene, diesel and natural gas which inevitably produce CO2 and NOx emissions. To reduce their environmental impact, gas turbine engines
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Applications are invited for fully funded PhD studentship in hybrid electric propulsion systems design and optimization within the Propulsion Engineering and Thermal Power Centre at Cranfield
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Applications are invited for fully funded PhD studentship in hybrid electric propulsion systems design and optimization within the Propulsion Engineering and Thermal Power Centre at Cranfield
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Applications are invited for fully funded PhD studentship in propulsion systems design and optimization within the Propulsion Engineering and Thermal Power Centre at Cranfield University
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. This project combines microbiology, chemical engineering, and wastewater treatment principles to develop a proof-of-concept reactor that harnesses natural processes for resource recovery, enabling resilient and
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that is both precise and scalable. This disruptive technology mitigates the solid-state changes and particle size variability associated with historic drug production approaches to catalyse the development
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, research and consumables, and travel for international conference. The candidate will be working with a highly interdisciplinary and international team to develop the advanced sensors technology for rapid