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the Deputy Vice-Chancellor (FEAS). Cranfield Manufacturing, Materials and Design community are recognised for the delivery of niche postgraduate research, education, and consultancy. We are unique in our multi
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control the storage and movement of organic carbon across the soil–bedrock continuum. The role will involve significant periods based at Diamond Light Source, where you will design and deliver experiments
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involve significant periods based at Diamond Light Source, where you will design and deliver experiments using techniques such as X-ray micro-computed tomography and X-ray Absorption Near Edge Structure
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functions, as well as visualisation of multi-sensor data. You will also support the optimisation of full-stack automated driving pipelines and contribute to the design and evaluation of novel perception
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research to understand how microbial communities, epilithic organisms and plant roots contribute to organic carbon transport and transformation during soil formation. The role will involve designing and
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contribute to organic carbon transport and transformation during soil formation. The role will involve designing and running experiments, coordinating field and laboratory activities in the UK and
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expertise in soil carbon analysis and interpretation, and ideally experience of isotopic or radiocarbon approaches relevant to environmental materials. You will be confident designing and delivering
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innovation for over 40 years. You will contribute to the delivery of Cranfield University’s research portfolio in the Advanced Sensors Laboratory for Water-Environment-Health, led by Professor Zhugen Yang
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project, inform strategies and asset design to exploit the potential of phototrophic microorganisms for the recovery of value from waste and the protection of the environment. This is an exceptional
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-liquid separation strategy for the implementation of photo-bioreactors. Your work will contribute to an international project, inform strategies and asset design to exploit the potential of phototrophic