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Application deadline: 01/12/2026 Research theme: Quantum communication, condensed matter, quantum optics How to apply: https://uom.link/pgr-apply-2425 This 3.5 year PhD project is fully funded
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to the development of large-scale quantum communication infrastructure by identifying viable pathways for practical deployment of secure quantum networks. Funding Home students can apply only. Only home tuition fees
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shaping the epigenetic landscape on chromatin. Mutations and dysregulation in transcriptional regulators are a hallmark of cancer, where rewiring of enhancer networks impacts cancer proliferation
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new approach has emerged that integrates data and mathematical models through neural networks. This has led to the development of a method for solving partial differential equations (PDEs) known as
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aircraft wings, led by Airbus and funded by the Aerospace Technology Institute. You will develop strong research, supervision, network, communication and project management skills. You will gain unique
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will implement a network of video cameras to investigate fine-scale patterns of habitat use over extended periods, in relation to key environmental drivers. This camera network will also act as a testbed
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. Field research: A major component of the PhD will involve intensive in-situ field measurements in selected sites of the TIF-CER field network and integration of data from across the field network
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field network and integration of data from across the field network. The project will use standardised biodiversity monitoring across to examine how wildlife responds to tree-based farming systems
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; Portland, Maine; Oakland, California; San Francisco; Seattle; Silicon Valley; Arlington, Virginia; the Massachusetts communities of Burlington and Nahant; Toronto and Vancouver). Whilst the PhD will be a UK
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’–mechanical networks built from many sensors and actuators that locally communicate with one another to achieve collective functionality. These active networks could enable next-generation bioinspired robots