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at TU/e is proposed, focused on the hardware design of new DC power electronics to significantly reduce its weight while maintaining high efficiency. Moreover, the study will also investigate
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are exigently demanded to coat graphite crucibles and susceptors for bulk SiC crystal and epitaxial SiC film growth processes for supplying wide bandgap materials in the fast growing market of semiconductor power
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to identify trends in the data. Applicants should have a PhD in physics, materials science, electrical engineering, or a related field. A deep understanding of device physics, numerical modeling, and computer
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minimum IELTS score of 7.0 overall and 6.5 on parts • technical skills: A PhD degree in physics, material science or engineering (or equivalent) is required. A demonstrable background in computer
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and/or power electronics engineering and some knowledge in practical mechanical engineering. For the Postdoc position: A PhD degree in Electrical Engineering with a specialization in pulsed power, high
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on the procedure, please contact our secretary, email [email protected] . Within our policy framework on quality, almost all academic staff at the Faculty of Law have obtained a PhD degree and
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the monolithic integration of RTDs with lasers and other synaptic weighting devices to form electronic-photonic neurons on chip, thereby setting the grounds for future large-scale neuromorphic circuits. The PhD
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team of physicists, materials scientists, engineers and biochemists. Requirements Specific Requirements We are looking for candidates that meet the following criteria: PhD degree in Physics, Biophysics
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on four areas: DC Systems, Energy Conversion and Storage (DCE&S) Photovoltaic Materials and Devices (PVMD) Intelligent Electrical Power Grids (IEPG) High Voltage Technologies (HVT) The Electrical
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aim is to eventually extend the range of battery-powered airborne vehicles (e.g., drones) and provide alternative means to store electrical energy in an airplane. The scope of the work involves