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Field
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for wiretap coding. The potential use cases for wiretap codes include Internet of things (IoT) networks featuring short packet payloads, and ultra-reliable low latency communications (URLLC). Research program
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optimize composite materials that can significantly enhance the efficiency of wastewater purification processes by leveraging the piezocatalytic phenomenon an emerging technology with great potential
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, processor/system simulators (Gem5, NVSim), SystemC, HLS tools, abstractions and intermediate representations, Programming models, MLIR, LLVM, experience in code optimization, programming expertise in C, C
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suspensions and fiber-reinforced feedstocks optimized for 3D printing and continuous fiber processing. Exploration of new material compositions, interpenetrating networks, and hybrid matrices to achieve
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of quantum computing principles (required) Knowledge of conventional communication networks and/or distributed computing (advantage) Experience with Qiskit, QuTiP, pytket, circuit optimization, or quantum
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optimize composite materials that can significantly enhance the efficiency of wastewater purification processes by leveraging the piezocatalytic phenomenon an emerging technology with great potential
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the innovative use of piezocatalysis. The successful candidate will engage in cutting-edge research to understand, design, and optimize composite materials that can significantly enhance the efficiency
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or Cloud computing and machine learning techniques? You stand out from your peers because of strong commitment and independent work? You are a team player and communicative (excellent oral and written
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, planning, action). - Experience with leveraging and tuning Large Language Models. - Understanding of intent-based networking (IBN) and goal decomposition from operator-level intents to micro-intents
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researcher at the NIOO-KNAW. We expect you to develop funding proposals and build a network of collaborators both within academia and with stakeholders with whom you will co-develop projects to expand