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optimize large-scale distributed training frameworks (e.g., data parallelism, tensor parallelism, pipeline parallelism). Develop high-performance inference engines, improving latency, throughput, and memory
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-Based Generative Models: How can we fundamentally redesign generation processes for superior efficiency, controllability, and quality? We are exploring diffusion models, flow-matching, and other parallel
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not limited to: Agriculture, Crop Science, Animal Science, Biology, Biotechnology, Bioinformatics, Botany, Microbiology, Computer Science and Big Data Analytics, and Artificial Intelligence. IV
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at elucidating the fundamental molecular mechanisms underpinning diverse pathophysiological processes; Develop and supervise the establishment of a world-class research programme in health data science; Foster a
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Biology Research Centre at Human Technopole combines computational and experimental techniques to study how tumours arise and evolve. Our goal is to measure the evolutionary processes in human cancers
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Intelligence, Brain-inspired Computing, Human-Computer Interaction, Flexible Wearable and Intelligent Integration System, Machine Learning, Data Mining, Big Data Platform, Cloud Computing, Distributed Computing
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[Research areas] The information processing mechanisms of living organisms, including humans, are expected to bring about new breakthroughs in information communication systems. To achieve this, it
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for animal experiments. Other core facilities include cryo-electron microscopy, mass spectrometry, flow cytometry, light microscopy, genomics, metabolism, bioinformatics, and high-throughput screening. SLS is
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, Materials Science, Energy Science, Energy Engineering, Optics, Computer Engineering, Integrated Circuits, Information Engineering, Robotics, Network Science, Artificial Intelligence, Financial Engineering
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Faculty Positions, Aging and Neurodegeneration, Westlake Laboratory of Life Sciences and Biomedicine
-of-the-art core facilities at WLLSB, including cryo-electron microscopy, mass spectrometry, flow cytometry, light microscopy, genomics, metabolism, bioinformatics, and high-throughput screening. WLLSB has