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to address climate change. To bridge this gap, this project will characterise wildfire charcoal from historic fires with known ages (years to decades to 174 MA old) to examine compositional evolution and
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their operational reliability. The PhD student will combine mathematical models, in-house laboratory tests in a wind-wave-current flume (https://research.ncl.ac.uk/amh/ ) and numerical methodology to quantify
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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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universities and provide access to state-of-the-art technologies and resources, enabling students to test and implement their solutions in high-impact, real-world scenarios. Applicant skills/background The ideal
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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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. The project will initially focus on closed-loop DBHE configurations as a simplified test case before extending the methodology to fully coupled THMC numerical models. Within this framework, governing
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test cases, laboratory experiments, and field measurements. It will then be applied to a real-world case study on the Ouseburn in Newcastle upon Tyne to demonstrate its capability for real time water
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City Metropolitan Area (MCMA). This project will examine the drivers and consequences of water insecurity in Mexico City, with the goal of identifying sustainable, equitable, and long-term strategies