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of Warwick, and Prof Emma Kendrick at the University of Birmingham. The project will be affiliated with the Faraday Institution FAST project and will combine advanced computational modelling with experimental
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an interdisciplinary program that brings together Warwick Medical School and partners from the School of Engineering and Industry, combining machine learning and computational modelling to solve a
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From electric vehicles to grid-scale energy storage, the future of clean energy relies on breakthroughs in battery technology. This PhD will develop cutting-edge terahertz spectroscopy methods to unlock scalable manufacturing of next-generation solid-state batteries. The project: Solid-state...
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. This leaves manufacturers and battery management system developers with limited data on which to define safe operating windows, while the computational models intended to predict plating–stripping dynamics
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engineering lies the future of computing and energy harvesting. We are seeking an ambitious researcher to push the limits of the atomic scale, transforming theoretical insights into the building blocks of next
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of full-time study. Eligibility: This studentship is available to home students only. The candidate should have a good 2.1 Bachelors, or Masters degree in Engineering, Computational or Physical Sciences
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high flow nasal cannula in patients with acute hypoxemic respiratory failure: A computational study", Respiratory Research, 2025. pdf [2] H. Shamohammadi, S. Saffaran, R. Tonelli, V. Chiavieri, G
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Supervisor(s): Prof. Chaoying Wan, Prof. Steven Brown (Physics department) Stipend: UK or international Duration: 3.5 year Funding Eligibility: UK or international Start Date: 1st November 2026 Research Group: Nanocomposites Project Overview We welcome a highly motivated PhD researcher with a...
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, it is implemented via three-loop CF cascaded control. The project aims to develop: • Robust and fault-tolerant CF estimator overperforming Level 5 EV automation expectations under EMB parameters
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-frequency eddy current sensor validated against real ROT measurements; (3) a real-time physics-constrained state estimator integrating JMAK transformation kinetics with the EM forward model; and (4) a model