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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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Lipid nanoparticles are critical delivery systems for a wide range of biomedical applications. This project will involve studying the structural properties of lipid nanoparticles, modifying particle
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Honours in engineering or science, or another suitable field. To be eligible for this scholarship you must: Be an Australian citizen or an Australian permanent resident who is eligible and has applied to be
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materials, formulations and procedures to create particles, for outputs aligned with both academic advancement and industry partners. Materials will be evaluated for size, morphology and structure-function
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These models are technology platforms that facilitate drug discovery and fundamental research. Our research is funded by Australian Research Council. This project aims to develop bio-microfluidic
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to building structure-activity relationships (SARs) based around targeted modifications of their patented gold-based drug candidate using innovative in vitro protocols to refine lead drug candidate(s). This
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$47,000 per annum (2025 rate). A four year Project Expense and Development package of $13,000 per annum. A 60 day Industry Engagement component with the industry partner. A structured professional
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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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This scholarship will suit applicants with good knowledge or strong interest in structural and construction engineering, applied mathematics, circular economy as well as applications of artificial
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chemical engineering ( Bachelours or Masters), Be an Australian resident or citizen or meet English requirements of the University Have a first-class honor in chemical engineering ( Bachelours or Masters