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. Electromagnetic Management The use of wide-bandgap semiconductor devices can significantly reduce the size of passive components within power electronic converters. However, their high switching speeds can
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drives demands innovative design and manufacturing solutions. Advanced additive manufacturing techniques will be explored to improve thermal management across the entire system. 3. Electromagnetic
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flux machine architectures and enabling technologies for three-dimensional electromagnetic design. Motivation As electrification expands beyond automotive applications, conventional radial and axial flux
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using light). Facilities and research environment: High-performance computing facilities; Photonics and electromagnetics laboratories; Experimental platforms for optical (light-based) computing; A
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visual neuroscience laboratories; Dedicated simulation and modelling softwares for electromagnetic and optical design; Access to dedicated cleanroom fabrication facilities; A collaborative research
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([email protected] ) b. Submit a short Faraday Institution expression of interest form: https://www.surveymonkey.com/r/XL23CSF c. Apply through the University of Nottingham’s application portal
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, spanning sensing, nanotechnology, AI, and clinical medicine A supportive and inclusive research culture, underpinned by the Researcher Development Concordat (http://www.vitae.ac.uk/policy/concordat ). Close
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datasets, and large-scale statistical studies comparing different methods. The successful candidate will be jointly supervised by: Dr Edward Gillman (https://www.nottingham.ac.uk/physics/people