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on developing and demonstrating a modular, containerized fuel cell system capable of dual-fuel operation with either hydrogen or methanol. The system aims to provide electrical power to critical infrastructure
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) develop and optimize extraction techniques using enzymes in combination with non-thermal technologies such as ultrasound, ohmic heating, and pulsed electric fields, (iii) evaluate the techno-functional
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. The starting date is according to mutual agreement. You can read more about career paths at DTU here and the Department of Electrical and Photonics Engineering here . Further information Further information may
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Job Description Would you like to become part of the solution toward green energy transition, by helping develop the methods for modeling future power and energy systems? The Renewable Plants in Energy Systems (RES) section at DTU Wind and Energy Systems is inviting candidates to apply for a PhD...
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fostering a creative and successful academic environment. DTU Electro has 350 employees and span activities in physics, photonics, and electrical engineering. Research is performed within nanophotonics
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Department of Electrical and Photonics Engineering (DTU Electro) at www.electro.dtu.dk . If you are applying from abroad, you may find useful information on working in Denmark and at DTU at DTU – Moving
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Job Description Are you passionate about renewable energy and eager to apply machine learning to real-world challenges? Join our research team at DTU and work on groundbreaking advancements in renewable power system dynamics. Collaborate with experts from DTU and IIT Bombay, gain hands-on...
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scientific backgrounds, including electrical engineering, industrial engineering, operations research, data science, and applied mathematics. Many of our former students are now successful scientists in both
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engineering challenge. Key to success will be the development of cost competitive and reliable methods to produce hydrogen via electrolysis of water/steam driven by green electricity. Hydrogen can be used as a
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current and future challenges towards reducing the role of humans in the decision process and the need for direct human interventions in the wind power plant operations and maintenance activities