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, you co-design the power stage and heating mechanism to reach extremely high efficiency at industrial scale. Your research centres on two challenges: Topologies and control — You develop and compare MV
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efficiency at industrial scale. Your research centres on two challenges: Topologies and control — You develop and compare MV converter topologies and control strategies delivering DC, high-frequency AC, and
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design specific constructs to edit transcription factor genes and their target promoters, and analyse the effects of optimized gene expression regulation on plant performance under optimal and field-like
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expertise, preparing them optimally for future challenges.
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explore circuit architectures such as local digitisation, event-driven or asynchronous readout, and noise-immune topologies to achieve robust, ultra-low-latency tactile sensing with a high dynamic range
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: - A PhD degree in optimization or systems and control theory. - A strong mathematical background and an interest in conducting theoretical research. - A proven track record. - Excellent English
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: Develop AI-assisted experimental workflows for oxide semiconductor deposition, aiming to accelerate process optimization and unravel new process–property relationships, and contributing to an EU Horizon
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not sufficiently understood. In particular, the interplay between surface properties, wafer morphology, and the resulting bonding performance is still largely optimized empirically. In this postdoctoral
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the effects of optimized gene expression regulation on plant performance under optimal and field-like conditions at the Netherlands Plant Eco-phenotyping Centre. Your research aims to improve tomato Zn and Fe
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work on plant genetics, growth strategies, and crop management with the aim of achieving optimal crop performance by integrating plant, environment, and management. The position offers close