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of the elderly to space robotics. We are now looking for a Postdoctoral researcher in quantum algorithms and optimization. Are you as excited about quantum technology and its future applications as we are? We
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order by the strong THz pulse which can modulate the spin-orbit and exchange interactions, which are responsible for magnetic ordering. We will focus and concentrate intense THz radiation with an antenna
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pulse which can modulate the spin-orbit and exchange interactions, which are responsible for magnetic ordering. We will focus and concentrate intense THz radiation with an antenna onto a magnet, to switch
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on identifying and discovering patient sub-cohorts within an electronic health record database. This discovery process will take place via the design of deep clustering algorithms based on state-of-the-art
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. Transport within cilia, the cell’s signalling and sensory antennae, is central to human biology. It enables these cell-surface organelles to assemble and dynamically change their proteome in response
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. The project aims to elucidate the molecular mechanisms of dynein-2 transport in cilia using cutting-edge structural and biochemical approaches. Transport within cilia, the cell’s signalling and sensory antennae
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-to-cell active antenna array design. The start date is expected in Jan/Feb 2026. It will be carried out under the supervision of Dr Haijun Fan. For more information, please send enquiry emails to Dr Haijun
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algorithms, to applications in astronomy and medicine. Multiple positions are open in the context of the £4M research Fellowship TomoGrav awarded by the Royal Society to Dr Kazunori Akiyama (moving from MIT
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algorithms for entanglement distribution in quantum networks. The purpose of the role is to contribute to the project "Utility Optimization in Quantum Networks: Algorithm Design and Analysis", working with Dr
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About the Role The position is funded through the EPSRC project “Zeros, Algorithms, and Correlation for graph polynomials”. We study various combinatorially defined polynomials such as the