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and signal processing methods using machine learning techniques to enhance the resilience, efficiency, and security of cell-free massive MIMO systems, which are expected to play a key role in next
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. Your work will feed directly into the development of predictive models that link microstructure to performance, guiding the design of alloys that are stronger, more reliable, and more efficient. By doing
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fibre felts remain essential for applications requiring enhanced performance, such as high-temperature resistance, dimensional stability, or chemical compatibility. However, current research into circular
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this fundamental challenge, the PhD candidate will be part of a wider team to establish methodological framework, combing utilisation of controlled tree growth test, thermodynamic modelling and advanced optical
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solid-state nuclear clock, where thorium-229 is present in a host crystal, which could be suitable for applications from millimetre-accurate GPS to earthquake prediction. The performance of the clock
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insulation systems becomes critical to maintaining performance, reducing downtime, and extending asset life. Generator stator windings typically comprise multiple sub-level insulation systems, including Main
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additives in lithium-ion battery (LiB) electrodes. With the exponential growth in demand for high-performance batteries, the need for scalable, high-quality CNT production has never been greater. Chemical
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activated enzymes for selective chemical transformations. The first part of the project will involve preparing and characterising a set of photoresponsive proteins. These proteins will then be screened for a
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, through specific experimental arrangements during the PhD project. This PhD is fully funded by the University of Manchester as part of their commitment to support a recently successful BBSRC-Arxada award
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discipline Strong quantitative and analytical skills Ability to work independently and manage time effectively Good written and verbal communication skills Motivation to address sustainability and climate