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The development of advanced nanofiber membranes with engineered 2D nanochannels represents a transformative approach to addressing critical challenges in energy harvesting and carbon capture. By
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Optimizing a 3D microfluidic IVD model to study cell responses to wear particles, refining culture conditions, and analysing cytotoxic and inflammatory mechanisms. Optimizing a 3D microfluidic IVD
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. 31/10/2028 31/10/2028 1 (one) 1 (one) Qualification in biomedical and biomechanical and mechanical engineering. Qualification in biomedical and biomechanical and mechanical engineering. Please submit
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This ARC Linkage industrial-based PhD project is defined in partnership between RMIT University and industry partner and aims to address the common issues of 3D-printed thermal energy management
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approaches to explore problems associated with membrane charge transport. Ion channels are proteins that control the movements of charged molecules across cell membranes to enable electrical activity in