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are expected to include: •Robust and “functionally explainable” machine-aided decision support for Safety and Mission Critical objectives e.g. fault detection/tracing, evasive manoeuvring, target selection etc
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lower orbit space debris). The increasing density of space objects in Lower Earth Orbit (LEO), including the proliferation of satellite constellations, further exacerbates the risk of collisions and the
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the loadcarrying capacity of the GT components and ultimately leading to catastrophic failure. The lack of ability of early detection and timely prevention of hot corrosion has resulted in many engine failures
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to provide their own financial support in relation to tuition fees, research support fees and living expenses. This studentship is open to both UK and International applications. Find out more about tuition
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This studentship is open to both UK and International applications. This is a self funded PhD opportunity. Find out more about tuition fees. Cranfield Doctoral Network Research students at Cranfield benefit from
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hydrogen pumping system. Regenerative pumps are not currently used for pumping volatile cryogenic fluids such as liquid hydrogen. The objective of this project would be to develop a structured design
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to discover the fundamental mechanisms responsible for damage and deformation. About the host University and Through-life Engineering Services (TES) Centre Cranfield is an exclusively postgraduate university