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This PhD studentship, based at the University of Exeter's Penryn Campus (Cornwall), offers an opportunity to conduct research at the intersection of wind energy, power systems, and advanced control
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The maximum temperature that metallic materials may be used in power generation is generally determined by their creep strength. That strength is determined by creep tests on round-section test pieces. It is
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developed to study the effect of more damaging surface phenomena. Motivation The maximum temperature that metallic materials may be used in power generation is generally determined by their creep strength and
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transition to a net-zero economy, electrical power systems are rapidly decarbonising supply whilst electrifying carbon-intensive demand. This is accelerating the integration of low-carbon technologies (LCTs
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of the Manufacturing Technology Centre (MTC) and academics within the Power Electronics, Machines and Control (PEMC) Research Institute , University of Nottingham. The project will be supported by the state-of-the-art
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of the Manufacturing Technology Centre (MTC) and academics within the Power Electronics, Machines and Control (PEMC) Research Institute , University of Nottingham. The project will be supported by the state-of-the-art
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lead to high-quality, cost-effective systems with predictable properties (functionality, timing, reliability, power dissipation, and cost). Design trajectories for applications that have strict real-time
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academic writing is an advantage Ability to work both independently and as part of a team Strong interpersonal and organizational skills The selected candidate must be admitted to the PhD program at
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drive space weather effects in Sweden and impact the ground and power infrastructure. Starting date is September 14, 2026, or by agreement. The deadline to submit application is May 20, 2026. Project
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and toolsets. Interest (or experience) in Formal Methods and Cyber-Physical Systems. The ability to communicate complex technical ideas to both academic and industrial audiences. Fully funded 3.5 year