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wakes reduce the energy production of downstream turbines and can increase structural loading, creating a major challenge for the efficient and reliable operation of large wind farms. A novel approach
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advanced power-electronic devices and converters. We are recruiting two PhD researchers who will work as a closely connected team. One position focuses on creating wideband current-sensing technology; the
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to enable reliable and sustainable steels for future hydrogen infrastructure and industry. Hydrogen embrittlement is one of the major barriers to the safe deployment of hydrogen technologies. At the same time
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adds value and where its risks lie, is lacking. In this PhD project you will map current and future GenAI use across the full HTA lifecycle, from horizon scanning to reassessment, and translate
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reliable hydrogen-resistant circular steels. In this role, you will develop fundamental insights into the mechanisms governing hydrogen-induced degradation and failure of circular steels. As a PhD researcher
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for outstanding and enthusiastic PhD candidates, with a proven track record of excellence, to work on a challenging PhD project, in an exciting multidisciplinary team. Section Mechanics of Materials The section
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, current tear-collection methods can alter tear composition and prevent reliable measurements, limiting the clinical adoption of tear-based diagnostics. In this PhD project, you will develop innovative
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this PhD project, you will build a self-driving laboratory platform that will help solving outstanding questions at the forefront of (photo)chemistry by implementing automated spectroscopy workflows
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. As a PhD researcher, you will unravel the atomic-scale mechanisms of hydrogen embrittlement in compositionally complex recycled steels, using density functional theory and machine-learned interatomic
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information for reliable parameter reconstruction. You will work in close collaboration with the research department at ASML, the Centrum Wiskunde & Informatica (CWI, Prof. dr. Tristan van Leeuwen), and the