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. They include high-temperature, high-power applications, including heat pumps, thermal storage, and complex process units, where both physical understanding and intelligent control are essential. What you will do
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heat integration in integrated Power-to-X systems. You will develop and apply physics-based process models that describe the behavior of Power-to-X plants under varying operating conditions. This
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the electrical grid, electrolysers, fuel-synthesis processes, energy storage and heat integration in integrated Power-to-X systems. You will develop and apply physics-based process models that describe
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between 1990 and 2016. As cities expand and urban heat intensifies, efficient and reliable cooling infrastructure becomes critical. Yet current systems suffer from persistent challenges: design oversizing
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quantum algorithms that solve life-science-relevant chemical and biological problems. The project This PhD project focuses on exploiting semiconductor quantum hardware operated at cryogenic temperatures