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Interested in working on a the future of optical inertial sensing for mechatronic vibration control? Join our team! Job description The CHiPS (Compact High-Precision Sensors) project aims
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-friendly latex-based and UV-curable inks. These positions combine experimental and computational approaches to create high-performance inks with reduced environmental impact. PhD Position one and two
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Assess the technical feasibility and performance of industrial heat pumps in steam generation and recovery. => Design options and technology inclusions Develop models to quantify the flexibility potential
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) performed within the Electrical Energy Systems (EES) group of TU/e. Within the IES program, research is conducted into operation and planning of future sustainable energy systems, with an emphasis
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the technical feasibility and performance of industrial heat pumps in steam generation and recovery. => Design options and technology inclusions Develop models to quantify the flexibility potential of electrified
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and work on multi-commodity energy districts? The envisioned research is part of the research program Intelligent Energy Systems (IES) performed within the Electrical Energy Systems (EES) group of TU/e
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open-source code (Python) that is high-performing and scalable to comprehensively quantify uncertainties using probability theory. This is where you will contribute: in the application of the developed
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technology experts work together to build a framework on open-source code (Python) that is high-performing and scalable to comprehensively quantify uncertainties using probability theory. This is where you
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, allowing them to maintain this high efficiency even under rapidly changing load conditions, such as during pulsed operation. This opens up new operating regimes that have previously been inaccessible and
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of computational power over the last decade has enabled scale-resolving simulations (SRS) of turbulent flows at an unprecedented resolution. In combination with high-performance computing (HPC), parallel