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used to simulate the effect of design and environmental factors on the initiation and growth kinetics of corrosion. Industrial Collaboration This project is part of an ongoing collaboration with Grundfos
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. The project will always be open to explore alternative ideas and concepts, with the ultimate goal to design, characterise and implement new devices for demonstration of THz-driven streaking of ultrashort
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their application in nuclear power plants. Research Context: The project will leverage a dedicated galling rig, housed in the Royce Institute at the University of Manchester, designed explicitly for conducting tests
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This 4-year PhD is fully funded for UK home students (by The University of Manchester), but only partial funding is available for overseas students. We will also provide a tax-free stipend set at
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satellites. The project is a collaborative effort involving teams at the University of Manchester and University of Southampton and partners at the Alan Turing Institute and HMGCC. The research will seek
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enables task (ii). This multidisciplinary project will be conducted at The University of Manchester and at ISIS Neutron and Muon Source. Firstly, the experimental work on the absorption as
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fuel molecules and intermediates that can integrate with existing petrochemical processes to produce sustainable fuels and base oils. Activities will include 1) Design and rapid prototyping of new
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of Manchester from October 2024. The use of machine learning methods and molecular simulations for polymer design and property prediction is the new frontier in polymer science. This project aims at using a mix
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of Prof Anthony Green. The design of enzymes with new modes of catalysis is a major objective in modern biocatalysis. In this project will use state-of-the-art enzyme design, engineering and
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engineering methodologies. The student will gain diverse skills in molecular biology, in vitro expression, design and optimization of high-throughput biochemical assays, laboratory evolution, and analysis