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engineering background with fundamental knowledge on renewable based modern power systems. The candidate must document knowledge on: modelling of renewable generation assets, flexible electrical loads, and
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to approximately 840 working hours over the three-year period. Required qualifications Applicants are expected to hold a master’s degree in computer science, software engineering, energy engineering, electrical
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Job Description SDU Microelectronics, part of institute of Mechanical and Electrical Engineering, University of Southern Denmark (SDU), invites applications for a 3-year PhD position within Wearable
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). The overarching goal of the PhD project is to develop a molecular- and system-level understanding of CO₂ capture from ambient air, enabling improved efficiency, stability, and energy performance compared to current
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complementary aspects of how electric fields and electrode-associated niches influence the structure, function, and stability of methanogenic microbial communities in bioelectrochemical reactors. Together
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designing the turbines of tomorrow to the digital energy solutions of the future; from developing electric power systems to exploring more democratic processes for project planning. Technology for people DTU
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– preferably in mechanical engineering, electrical engineering, robotics, or mechatronics – and demonstrate a strong interest in interdisciplinary research. A demonstrated enthusiasm for designing and
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ionic conductivity and electrochemical stability. We will employ a garnet structured ceramic, Li7La3Zr2O12 (LLZO) as the electrolyte. The fabrication of the electrolyte will be done by field assisted