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We are seeking exceptional candidates for a full-time Postdoctoral Research Assistant to join the Applied Artificial Intelligence Lab (A2I) at the Oxford Robotics Institute in the Department
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to understand and predict how technologies evolve — from artificial intelligence to net-zero innovations in energy, transport, and carbon capture. By building a global database on technological progress, we seek
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understanding of electro-active artificial muscles, or other stimuli-responsive smart materials. We are looking for someone with a strong passion for interdisciplinary research, collaborative teamwork, and
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and other members of his research group within the Durham Quantum Light and Matter research section. The goal of the research is to synthesise and study artificial quantum materials using ultracold
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Location: Old Road Campus, Oxford, OX3 7LF We have a new and exciting opportunity for a Senior Postdoctoral Researcher to join the new Oxford-GSK partnership focused on biostatistics and artificial
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, sustainable agriculture, climate change, clean energy, and robotics in an era of artificial intelligence. EIT blends groundbreaking research with practical applications to deliver lasting results. A cornerstone
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artificial noise, cooperative jamming and directional modulation. Current hybrid RF-OW networks, especially those operating in the high RF frequency spectrum, suffer from limited connectivity, as a strong line
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artificial quantum materials using ultracold molecules arranged in regular arrays to probe novel quantum phenomena in strongly interacting quantum systems. The use of molecules is motivated by their rich
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of delignified nanocellulose based gas transfer scaffold membrane for artificial lung applications). CELLMEMBRANE aims to develop the world’s first bio-based nanomaterial ‘nanocellulose’ to manufacture
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artificial noise, cooperative jamming and directional modulation. Current hybrid RF-OW networks, especially those operating in the high RF frequency spectrum, suffer from limited connectivity, as a strong line