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maintenance of both mammalian and microbial cells Devise micro-bioreactor for co-culture of mammalian and microbial cells Program control algorithm for optical sensors Design, fabricate, and optimize
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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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wearable devices using digital knitting and advanced fabrication techniques. Motion Sensing & Data Processing: Implement and optimize algorithms for joint motion tracking, integrating signal processing 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
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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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on MOFs synthesis, CO2 storage and capture (employing adsorption technology). The successful candidate will contribute to the development and optimization of innovative methods such as thermal and pressure
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activities, including experimental design, data analysis, and interpretation, ensuring alignment with project goals and timelines. Configure and optimize experimental setups for in-situ characterization
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Keeping track of expenditure and remaining budget in an organized manner, ensuring that the spending is optimized and on track concerning goals set for the grant Develop ideas for application of research
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: Develop human-in-the-loop robotic simulator to provide in-silico trials for assistive robots. Build virtual human models based on ability data and machine learning. Optimize robot parameters to cater