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supported PhD scholarship at Monash University to undertake innovative research in the development, implementation and evaluation of living clinical practice guidelines in rheumatology. Based within
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evolution, chemistry and morphology. This project will investigate how machine learning can learn physically meaningful representations directly from these data and help understand how materials evolve during
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phase transformations, reduction pathways and microstructure evolution interact during the conversion of iron oxides to metallic iron. Particular emphasis will be placed on how temperature, gas atmosphere
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offers an opportunity to contribute to prototype development, experimental aerosol characterisation, bench validation and translational evaluation of an emerging pulmonary drug-delivery platform. Research
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I supervise projects considering the evolution of accretion discs and their connection to observations. In particular, I consider discs that are warped or distorted (not flat). This geometry has
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the Department of Materials Science and Engineering within the Faculty of Engineering, Monash University. We are seeking highly motivated PhD candidates to undertake research on the design and development of safe
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Current reseach is in the areas of: Development of biomimetic structures as ultrasound contrast agents Deep tissue imaging using photoacoustic contrast agents All optical photoacoustic sensors
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I work on the study of massive and supermassive stars (10-100,000 solar masses); the first generations of stars in the universe (Pop III stars); evolution of rotating massive stars and the spin
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the evolution of massive binary stars into compact binaries as sources of gravitational-waves and astrophysical inference on gravitational-wave observations. My research group on massive binary evolution -- also
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Economics” supported by CHE’s Global and Environmental Health Economics Research Theme. Potential research areas include: Aid effectiveness and locally led development Health care financing and universal