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) uses principles from systems neuroscience to develop reliable, low-power spiking neural networks and learning algorithms for implementation in a new generation of neuromorphic hardware. Both projects
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" (Supervisor: Prof Timothy O'Leary) uses principles from systems neuroscience to develop reliable, low-power spiking neural networks and learning algorithms for implementation in a new generation of neuromorphic
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developments such as novel algorithms to support logistics operations, novel automation approaches or the design and development of new digital support tools for logistics providers. Significant flexibility
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between closely related structures. An alternative approach to characterise the microstructure is through acoustic methods that exploit the different elastic behaviour of the phases present. In this PhD
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(CAFs) have been shown to promote pancreatic cancer progression. Our laboratory and others have demonstrated that CAFs are characterised by different populations that can differentially contribute
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materials. You would work as part of a larger team spread across a number of sites including Warwick and KCL London, who will provide different opportunities for you to develop the research. You would be also
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experience are strongly encouraged to apply. The position is open to UK citizens, or overseas students meeting the UK residency requirements, or able to cover the difference in international fees through
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The position is open to UK citizens, or overseas students meeting the UK residency requirements, or able to cover the difference in international fees through additional funding awards. How to apply For further
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Central Cambridge, Cambridgeshire, UK. The key responsibilities and duties will explore the range of possible non-sulphate aerosols - mostly powdered ceramics with different coatings - and will consider how
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Central Cambridge, Cambridgeshire, UK. The key responsibilities and duties will be to first explore the range of possible non-sulphate aerosols - mostly powdered ceramics with different coatings to allow