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for bio-inspired aerial platforms. The work forms part of an ARIA-funded collaboration between Heriot-Watt University and the University of Edinburgh, bringing together expertise in microdevices, electronic
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presents an attractive strategy to mitigate climate change. For this purpose smart bio-inspired systems are particularly attractive, and we previously demonstrated self-assembled vesicle microreactors
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and classical physics as well as between quantum and bio-molecular science. We develop universal matter-wave interferometry in the limit of high mass and high complexity, from organic molecules to metal
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and classical physics as well as between quantum and bio-molecular science. We develop universal matter-wave interferometry in the limit of high mass and high complexity, from organic molecules to metal