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, and materials science. PhD project description: Responsive 3D-printed functional devices interact with their environment, responding to stimuli (temperature, light, etc.), and “4D-printed” devices
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Ocean, including for enslaved and indentured labour as well as settlers; And on politics, the heavy work needed, at the bridge of sea and land set one context for the rise of urban violence between
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Ocean, including for enslaved and indentured labour as well as settlers; 4) And on politics, the heavy work needed, at the bridge of sea and land set one context for the rise of urban violence between
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-printed functional devices interact with their environment, responding to stimuli (temperature, light, etc.), and “4D-printed” devices respond over time (e.g. changing shape), controlled by the arrangement
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. Expert co-supervision from the University of Sheffield’s Groundwater Protection & Restoration Group and Shell’s Global Soil & Groundwater Solutions Team. A 3-month placement at Shell (in Year 3) for hands
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and an Industrial supervisor at Jaguar Land Rover (JLR). It falls within the remit of the Cambridge Engineering Design Centre (EDC), but interactions with other groups are expected, across and beyond
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in radiation–matter interactions, computational modelling, and materials science, with a strong publication record (h-index 36, i10-index 69). Dr Francesco Fanicchia, Research Area Lead: Material
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the design of the nozzle. The work will include the design of a scale- up dispersion system and perhaps the construction of a large-scale dispersion system which can be tested at ground level. There is no
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from which a continuous emulsion flow and recycled gas flow is taken. The work will include the design and scaleup and perhaps the construction of a large-scale system which can be tested at ground
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from which a continuous emulsion flow and recycled gas flow is taken. The work will include the design and scaleup and perhaps the construction of a large-scale system which can be tested at ground