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. • Solid knowledge of numerical methods, including optimization, linear algebra, and geometry processing. • Experienced on GPU programming, familiar with cuda thread scheduling, allocation, and
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/ML techniques for optimizing RFIC design and system performance would be an added advantage. Able to work independently and possesses strong research skills. Excellent verbal communication and
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Responsibilities: Develop and optimize flexible electronic devices, including sensors, actuators, and integrated circuits for health monitoring / wearable robotics applications. Design and fabricate flexible
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at the forefront of plasma processing and surface engineering. Key Responsibilities: Lead the design, optimization, and scale-up of PVD and CVD plasma-based processes, with an emphasis on high-performance composite
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develop and optimize nano-size carriers for nucleic acid delivery, focusing on mRNA therapeutics. The successful candidate will work closely within an interdisciplinary team that will develop a platform to
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. The position will focus on developing and optimizing control algorithms for exoskeleton robotic systems, aimed at improving human mobility and assisting individuals for lifestyle physical activities. The ideal
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. Ensure optimal progress of experiments in the laboratory by conducting, supervising, and evaluating laboratory procedures and outcomes. Revise and analyse targets to obtain high-quality and reproducible
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of highly structured topological light with nanoscale matter. CDPT is looking for a highly motivated candidate with keen interest in optics, imaging and nanophotonics spectroscopy, and the optimization and
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, engineering adhesives employed in automated or electronics manufacturing. Industrial experience related to adhesive optimization, development, and or scale-up. Evidence of technical skills related to resin
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in the development, validation, and optimization of 3D-printed modular floating structures. This includes conducting hydrodynamic analysis, finite element modeling, and stability assessments, as