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designs. Combining these classes raises issues around recyclability, interfacial adhesion, and mismatched thermal expansion that can induce stresses and affect lifetime performance. We invite a motivated
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, we'll develop new bipolar membranes with high water dissociation efficiency, low resistance, and high selectivity. You'll develop new materials and new configurations to improve the membrane performance
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governing LCI at steel grain boundaries and the inhibitory role of silicon in copper-contaminated steels. As a postdoctoral researcher, you will: Perform molecular dynamics (MD) simulations to obtain atomic
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. In particular, the interplay between surface properties, wafer morphology, and the resulting bonding performance is still largely optimized empirically. In this postdoctoral project, you will develop
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with researchers at TU/Eindhoven and AQUABATTERY, we'll develop new bipolar membranes with high water dissociation efficiency, low resistance, and high selectivity. You'll develop new materials and new
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of novel EO solutions. We offer: a stimulating multinational, interdisciplinary and open work environment; access to high-performance computing infrastructure and unparalleled EO and technology expertise; a
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are directly aligned with what society needs now and in the future. At TU Delft, our people make the difference. With their knowledge and curiosity, our staff provide a high-quality education and conduct
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TU Delft is looking for a Junior Researcher to contribute to research in offshore geotechnics, focusing on the installation, operational performance and decommissioning of offshore foundation
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to store electricity efficiently to cover durations of 25+ hours. In that light, we started the collaborative research project REDOX BLEND, performed at seven Dutch universities and knowledge institutes (TU
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that are still far from mainstream space engineering but could become disruptive in the future. The team operates to high academic standards, publishes in peer-reviewed journals and conferences, and has built a