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. Establish robust, high-resolution electron microscopy protocols to identify and quantify interfacial structural phenomena. Correlate interfacial structure with adsorption performance, contributing to a
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and components with high surface quality requirements. Despite the trends towards increasing automation and higher productivity, the polishing of complex geometries is still normally performed manually
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for SSM-SNN cores Integrate RISC-V processors using SoC flows Perform full-chip simulation, verification, and prototyping Publish and present research in high-impact venues Qualifications Applicants should
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environments with high international impact. We perform world-class research, which contributes with solutions to solve essential societal challenges within the green transition: food production and veterinary
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energy-efficient CMOS blocks implementing SSM-based LLMs. Prototype hardware blocks on FPGA and prepare for ASIC tape-out. Benchmark performance and comparison with transformer accelerators. Work with
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fostering a creative and successful academic environment. DTU Electro has 350 employees and span activities in physics, photonics, and electrical engineering. Research is performed within nanophotonics
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hydrogen. Focus areas include reactor design, heat integration, and energy efficiency. Electricity Market and Sector Coupling: Implement market-based operation strategies for PtX systems by incorporating
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for this role due to its advanced development, scalability, proven reliability, high performance, and ability to operate across a wide range of temperatures. Work description The appointed researcher
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aspects of photonics. Research is performed within nanophotonics, photonic nanotechnology, lasers, quantum photonics, optical sensors, LEDs, photovoltaics, ultra-high speed optical transmission systems, and
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with academic institutions abroad. Your primary tasks will be to: Perform internationally relevant research in planning, guidance, navigation and control of AUVs operating in partly structured