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techniques such as XRD, XPS, SEM, AFM, ellipsometry, Hall measurements or related methods. Experience with solar-cell characterization (J-V, EQE, stability testing) is considered an advantage. Excellent
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) from the end of 2026 onwards, but these regulations can only succeed if modern species identification and tracing methods can be upscaled, accelerated, and implemented by (non-)academic stakeholders. In
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methods can be upscaled, accelerated, and implemented by (non-)academic stakeholders. In this position, you will engage with both (inter)national academic and non-academic stakeholders in the field
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, modular and scalable MV converter topologies and control methods based on wide-bandgap (SiC) devices and multilevel or series-connected stages, meeting the dielectric criteria while delivering the dynamic
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Science landscape in the Netherlands Experience working with qualitative and co-creation methods, including expert interviews and focus groups Familiarity with Public Engagement Activities used in academic
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within representations and across tasks. The resulting methods will help bridge the gap between general-purpose foundation models and expert-level performance in specialised domains. The successful
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ethos and an ability to work independently Demonstrated understanding of the Open Science landscape in the Netherlands Experience working with qualitative and co-creation methods, including expert
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enabling foundation models to efficiently specialise through the exploitation of structure within representations and across tasks. The resulting methods will help bridge the gap between general-purpose
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and validate experimental methods to study wafer bonding in a quantitative and physics-based way. You will work on wafer bonding measurements and combine these with advanced surface metrology. It is
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storage, shared mobility, logistics, and neighbourhood services. The postdoc will develop optimization methods for allocating scarce physical space and time slots among these competing functions across