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requires overcoming coupled challenges in device switching behaviour, converter design, electromagnetic interference, thermal management, and long-term reliability. This PhD project will investigate advanced
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and electromagnetic simulations is an important advantage Strong motivation to complete PhD within the timeframe of the project Team player and advanced problem-solving skills Interest and enthusiasm in
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. The Department of Electronics and Nanoengineering conducts research and arranges related courses in the fields of electromagnetics, micro and nanotechnology, radio engineering, and space technology. The department
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nanofabrication, electromagnetic and micromagnetic computational modelling, theoretical and experimental analysis of electromagnetic properties of metamaterials, as well as the fundamentals of microwave
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offers ubiquitous coverage and reliable mobility, whereas optical wireless communication provides fiber-like capacity, ultra-low latency, and immunity to electromagnetic interference. Rather than treating
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candidates from all backgrounds to join our community. The Department of Electronics and Nanoengineering conducts research and arranges related courses in the fields of electromagnetics, micro and
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physics of electromagnetic materials and practical applications in 6G communications. The PhD is 4 years and funded by DSTL (Defence Science and Technology Laboratory), and you will undertake a mixture of
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Inria, the French national research institute for the digital sciences | Saclay, le de France | France | 2 months ago
to electromagnetism*. Machine Learning and the Physical Sciences workshop at NeurIPS. December 2022. A. Ribes, N. Benchekroun, T. Delagnes. *A Fast Learning-Based Surrogate of Electrical Machines using
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‑fidelity electromagnetic and multi‑physics simulations to develop efficient, compact and reliable solutions for sustainable energy applications in collaboration with industry. At the Department of Electronic
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. At AAU Energy, you will work with colleagues who focus on modelling, design and integration of power electronic systems and components, using high-fidelity electromagnetic and multi-physics simulations