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communication skills in English, both written and spoken. As a formal qualification, you must hold a PhD degree in physics, chemistry, materials science, nanoscience or equivalent. We offer DTU is a leading
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the core multiphase reactive algorithm and incorporating accurate thermodynamic models into process simulators. The goal is to deliver robust, high-fidelity software tools for both established and emerging
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on the technological core subjects and engineering scientific disciplines. Our research covers separation processes, reaction engineering, dynamics and process regulations, process and facility planning, unit operations
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forefront of fiber and quantum photonics. At DTU Electro, you will take a central role in the experimental demonstration of third-order spontaneous parametric down-conversion (TOSPDC), a process capable of
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capture. The research is based on strong competences on electrochemistry, atomic scale and multi-physics modelling, autonomous materials discovery, materials processing, and structural analyses. We also
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Compute. Our mission encompasses the creation of insights that allow the development of context-aware, distributed, and embedded cyber-physical systems, with a particular focus on Internet-of-Things (IoT
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in basic research and centres on mathematical models of the physical and virtual world, as a basis for the analysis, design, and implementation of complex systems. We focus on ensuring that our
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, micro/nanomanufacturing, and additive manufacturing. The research is based on a multidisciplinary use of process technology, materials science, solid and fluid mechanics as well as thermodynamics and heat
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will cover several of the items: Pioneer research in modelling and control within PtX and storage applications Analysis and modelling based on data-driven, physical and hybrid approaches Drive and
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engineering, dynamics and process regulation, process and facility planning, unit operations, heat transmission, fluid mechanics and applied thermodynamics. The Department enjoys very close relations with