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. The group expertise spans from the fundamentals and physics of photonics, optics, the design and fabrication of photonic integrated circuits (PICs) systems to exploiting optical linear/non-linear signal
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increasingly difficult to measure with sufficient bandwidth, accuracy and traceability. When converter efficiencies exceed 99%, even very small measurement errors can obscure the losses that designers need
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the tomato response to Zn and Fe deficiency and design strategies to improve the Zn/Fe nutritional status of tomatoes for human health. You will generate dedicated (single-cell) transcriptional data sets
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by the interface between the analog and digital domains. Addressing this challenge requires tight co-design across RF, intermediate frequency (IF) and mixed-signal circuits. Such integration is
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International, TNO, and QuiX Quantum. You will contribute to the design of the photonic circuits and their hybrid integration, followed by extensive quantum-optical characterization after fabrication
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Atomic Scale Processing for future chips and energy. The central challenge is to design and control materials at the atomic scale to enable next-generation devices with unprecedented performance
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the full mission lifecycle from early design through operations and lessons learned. The group leads the definition, harmonisation and validation of FDIR concepts, requirements and architectures, and
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management and distribution for space applications, both primary and secondary, platform or payload. In particular, the Section covers power system design, power and energy budget assessment, power
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design possible in which even the small details can be readily incorporated into the electromagnetic model for robust performance analysis? Information Antenna and RF systems play a pivotal role in society
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polymer science and materials chemistry, giving you the opportunity to explore how concepts developed at the molecular level can be translated into functional polymeric materials. You will design and