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Field
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bioassay guided approach to prioritize microbial extracts that exhibit the desired antibiotic properties, followed by cultivation and chemical profiling to optimize production and dereplicate, ahead
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to design and characterize optimized superconducting microwave resonators tailored for hybrid quantum experiments. · Perform precision measurements in dilution refrigerators at ICN2 and/or MIT, probing
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, network telemetry, network security, network compression methods, and optimizing network performance for machine learning applications. The ideal candidate will be interested in both building real systems
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, network telemetry, network security, network compression methods, and optimizing network performance for machine learning applications. The ideal candidate will be interested in both building real systems
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-edge research and development in EIT-based tactile sensing, machine learning for real-time state estimation, and sensory-motor control optimization for robotic systems. Funding is available for this post
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Design: Develop and optimize algorithms for sensor fusion, perception, and spatial intelligence, tailoring solutions for specific applications in robotics and healthcare. Prototype Implementation: Lead the
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technology. Responsibilities: • Conduct research on oxide-based semiconductors for BEOL compatible CMOS device applications. • Design, fabricate, and optimize CMOS transistors using
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modification mechanism and related molecules in stimulating reprogramming of fibroblasts into cardiomyocytes for heart regeneration. Explore novel strategies combining optimal cardiovascular cell types and
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to analyze wave interaction with natural coastal ecosystems under varying conditions. • Optimize the model to predict shear coefficients, drag forces, and energy dissipation. 2. Experimental Calibration and
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structural integrity and stress distribution of modular floating units under operational and extreme conditions. • Optimize design configurations to enhance performance and durability. 3. Stability and Mooring