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surfaces, the project expects to highly simplify the design procedure, antenna structure, and active beam-forming electronics. By using advanced aerospace compatible manufacturing, the metasurface antennas
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, HNMR, BET etc.) will be employed to characterize the carbon nanofiber structures. For molecular level, understanding, DFT modeling will be employed. The project would require fundamental investigations
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PhD Scholarship in the Centre for Advanced Defence Structures and Materials Experimentation (CADSME)
structures and/or materials experimentation. The project would suit students with a background/interest in advanced structures and/or materials experimentation.
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with large-area, ultrathin thickness, and high flexibility, understanding their plasmonic enhancement mechanisms, and construction of artificial leaves to perform the solar-to-chemical conversion, which
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engineering, materials science, chemistry, and engineering. This project relies on polymer science and synthetic chemistry to design the novel polymer chemistry and nanofibre structures for advanced membrane
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Processing/Control Path Planning/Trajectory Planning Multi-Target Tracking/Multi-Object Tracking, Bayesian Filtering, Radom Finite Set filters or closely related multi-target tracking approaches in radar
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for construction waste grasping, and further design flexible and adaptable robotic grippers for waste handling. The existing commercial robotic hand and grippers might not be able to handle irregular and heavy