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energy storage and conversion, with a focus on solid-state batteries, interfacial chemistry, electro-chemo-mechanics, and novel energy materials. Key Responsibilities: Conduct advanced research on solid
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. • Experiments & AI Integration - Synthesize and process functional materials relevant to batteries, aerospace alloys, and semiconductors using solid-state, solution, or thin-film methods. - Apply advanced
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within crewed systems, including the use of deterministic safety monitors, runtime assurance mechanisms, bounded autonomy concepts and human-in-the-loop supervision; devising and validating verification
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— investigating how mechanical forces from focused ultrasound alter immune cell function and tumor microenvironments Acoustic tool development — designing next-generation transducers, wearable ultrasound devices
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engineering to create permanent carbon sinks from waste. You will work with a multidisciplinary research team on cutting-edge technologies that have the potential to reshape the future of land reclamation
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them The Opportunity Are you an ambitious researcher looking to drive innovation at the intersection of non-Newtonian fluid mechanics, rheology, and advanced mineral processing? Join our world-class team
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• Possess at least a PhD degree in relevant fields include Civil Engineering, Ocean Engineering, Fluid Mechanics, Computer Science, or related disciplines. Applied Mathematics, Data Science
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materials and interfaces for solid-state batteries, aqueous batteries, and other emerging energy-storage technologies. The successful candidate will work closely with senior researchers, engineers, software
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related field. Strong background in solid mechanics, materials physics, and crystallography. Experience developing tools using Python, C/C++, MATLAB, etc. Demonstrated ability to conduct independent
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of Singapore (NUS). The group’s general program of research involves the coupling of organic materials, mechanical forces, and electrostatics at different interfaces (e.g., solid, liquid, or gas). This coupling