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the thermo-fluid dynamics of our heat exchangers and the complex adsorption/desorption phenomena within our reactors. Your work will be crucial for identifying system bottlenecks, optimizing performance, and
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to trial protocols and Good Clinical Practice. Work closely with other research nurses and practitioners in the delivery team to ensure optimal care and support for trial participants in our research
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according to scheduled timelines. Develop mastery of machine capabilities and operational knowledge to optimize performance. 4. Process Improvement and Resource Management Engage in exploratory work, problem
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hardware-aware training methodologies optimized for inference with the architecture and collaborate with project partners involved in the experimental demonstrations of various Machine Learning use cases in
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-edge algorithms into clinical workflows. Your responsibilities will include designing and optimizing signal processing algorithms, conducting rigorous validation studies, and ensuring the performance
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designing and optimizing signal processing algorithms, conducting rigorous validation studies, and ensuring the performance of existing algorithms meets clinical standards. You will also be involved in
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optimizing sensor materials to address anti-fouling capabilities. The candidate will ensure sensor coating materials respond directly to the key measurement parameters and optimise sensor material to maximise
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, free probability, random sphere packings in high dimensions, random walks and percolation on strongly correlated structures, optimal control and transport, interacting particle systems, and mixing times
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, free probability, random sphere packings in high dimensions, random walks and percolation on strongly correlated structures, optimal control and transport, interacting particle systems, and mixing times
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-time and therefore maintain an optimized printing process robustly in the face of variations in feedstock materials and/or the required output. This will be achieved by developing novel printing