44 high-performance-quantum-computing-"https:" "https:" "https:" PhD positions at Newcastle University in United Kingdom
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, and travel related to the project. Overview ReNU+ is a unique and ambitious programme that will train the next-generation of doctoral carbon champions who are renowned for research excellence and
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intensification, allowing precise control of mixing, mass and heat transfer in reactions and solid handling procedures, amongst other applications. However, application specific operational drawbacks can have
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increased rotational speeds of the cylinder(s). This has great benefits in process intensification, allowing precise control of mixing, mass and heat transfer in reactions and solid handling procedures
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stormwater) are a sustainable solution, but their long-term performance often suffers due to generic design approaches that overlook plant ecology and the interaction with soil structure development. This PhD
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storms, putting drainage systems under pressure. Rain gardens (vegetated basins that manage stormwater) are a sustainable solution, but their long-term performance often suffers due to generic design
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an efficient and mature technology, yet it requires high temperatures and has a large carbon footprint. This PhD project addresses a key challenge: efficiently producing bio-methanol from abundant
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fabrication within engineering cleanrooms, in vitro testing and collaboration with consultant radiologists and surgeons from Gateshead Breast unit to assess device performance and clinical safety. Number
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drug discovery start points for high-value cancer targets. An iterative cycle of design-make-test will be used to optimise hit fragments identified through screening. The project will provide
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, delivering greater performance, functionality, and reliability. This demands the adoption of faster switching wide bandgap devices and greater system integration. About This PhD This PhD programme is part of a
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pressures from climate change, urbanisation and ageing infrastructure. Although high-fidelity numerical models can simulate hydrodynamic and pollutant transport processes, their computational cost limits