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the research area where required. Lead the synthesis, functionalization, and intercalation of graphene and graphene-oxide materials including optimizing morphology, defect chemistry, and interlayer spacing
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these systems in both classical and quantum regimes, we aim to develop new methods for solving complex optimization problems and advancing machine learning architectures. The research involves investigating how
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, computer science, architecture, and engineering to develop scalable, data-informed solutions in sustainable design, construction, and energy management. The Cluster aims to modernize—and ultimately revolutionize
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. The goal of the PhD will be to seek mechanistic insight into the electrode polarization processes as well as strategies for improving performance by optimization of composition, microstructure, and the
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biotransformation. Develop and optimize microbial strains, biosynthetic pathways, and cultivation strategies to improve efficiency and product yield. Design and support the integration of biotechnological processes
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to research on some of the following themes: New algorithms for parallel/distributed AI/ML Hardware-aware and resource-efficient partitioning for parallel/distributed AI/ML Optimization of process-to-process
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bespoke space in the Oxford Science Park. The team will later move to a purpose-made facility in the Oxford Science Park, currently under construction. Once complete, this state-of-the-art facility will
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institutional structures and priorities. HERITOUR investigates how current collaborations function and how cross-sectoral policies can be developed within a democratic and regenerative governance model
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anisotropy for rotating magnetocaloric effect. The aim is to optimize the magnetocrystalline anisotropy on magnetocaloric single crystal-based particles composites to maximize the rotating magnetocaloric
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, construction, and optimization of synthetic biological systems and enzyme engineering workflows. Execute advanced molecular biology techniques, including DNA manipulation, PCR, and molecular cloning. Conduct