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numerically assess the performance via software simulation tools. Define the system specifications which will be then translated into requirements for the design and implementation of the photonic WDM switch
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to demonstrate and evaluate the performance of the innovative low latency and high capacity optical switched AI computer network architecture empowered by the developed photonic integrated WDM switches and
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Integrated optics is currently experiencing unprecedented growth, driven largely by the rapid expansion of artificial intelligence (AI), cloud computing, and high-performance data processing
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high-performance applications. The project brings together materials science, powder technology, additive manufacturing, and data science. Silicon carbide is widely used in demanding thermal, structural
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produce high-purity CO₂ without relying on chemical solvents, the physics of CO₂ desublimation is still not sufficiently understood. In particular, we need to know how the solid layer develops, how it
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non-reacting-flow simulations using lower-fidelity numerical models for compressible flows (Euler and URANS) will be compared to high-fidelity non-reacting-flow LES results to evaluate the predictive
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Thermoplastic composites are widely regarded as promising materials for the next generation of commercial aircraft, combining excellent mechanical performance with low weight. In addition
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largely by the rapid expansion of artificial intelligence (AI), cloud computing, and high-performance data processing applications. As AI models continue to increase in size and computational complexity
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on developing circular production routes for silicon and silicon carbide, key materials for high-temperature and high-performance applications. The project brings together materials science, powder technology
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PhD, you will: perform large-scale potato experiments using 100 contrasting soil microbiomes; use automated high-throughput phenotyping to quantify plant growth, physiology and disease development