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For over a century, X-rays have been used to visualise the internal structure of opaque objects, driving major breakthroughs in healthcare, industry, and scientific research. Conventional X-ray
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aims to produce the next generation of innovation leaders with the skills to work at the interface of research and industry in Australia. Please note that this opportunity is limited to applicants who
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and innovation catalyst, in this exciting project, you will develop novel algorithms to monitor and analyse workers' movements, detect harmful movement patterns, and implement simple intervention
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PhD Scholarship in Digital Mapping of Homemade & DIY Cultural Economies in First Nations Communities
while affirming ‘First Nations First’ and ensuring that there will be ‘A Place for Every Story’. The project aims to explore and celebrate diverse creative practices including traditional, community-based
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I am an ARC Future (former DECRA) Fellow and lead the Structured Nanophotonics Group at Monash University. My research in nanophotonics explores the full potential and multi-dimensional nature
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these methods to understand the atomic structure and properties of a range of materials being developed for efficient solar cells, light generation, batteries, superconductors, photonics and nanoelectronics. We
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of reproductive age in Australia. The outcomes from the project can be used to inform the co-design of new health services that are truly patient-centred and policy initiatives that lead to improved reproductive
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to design better strategies to overcome barriers, build momentum for change, and accelerate adoption of net zero solutions. Opportunity and Supervisory Team The PhD opportunity is based at Monash Sustainable
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to empower women to choose and request contraception in a pharmacy setting. The video will be co-designed with consumers and key stakeholders and piloted in community pharmacies. This pilot study will assess
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possess translational symmetry, the role of structure and symmetry in glasses is not established. This research programme involves the development of new x-ray and electron diffraction-based methods