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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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the development of numerical methods for astorphysical fluid dynamics and radiation transport. Projects may employ a range of approaches from analytic modelling and numerical calculations on desktop
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(Department of Business Law & Taxation, Monash Business School; Opportunity Tech Lab) The Opportunity This project addresses a pressing public policy and social issue: the propagation of bias in generative AI
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, communities and homes to prevent problem behaviour and mental ill-health. It is expected the project will lead to the development of systemic and targeted interventions to improve local and global health
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aims to explore who takes physics and astrophysics major units, why they pursue them, and what obstacles they may face. There are a number of research questions under this umbrella. Computational
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My primary areas of research activity are two fold: first, studing thermonuclear (X-ray) bursts from accreting neutron stars; and second, searches for optical counterparts of gravitational-wave
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of low-temperature scanning tunneling microscopy and spectroscopy, non-contact atomic force microscopy, photoelectron and x-ray absorption spectroscopies, and time-resolved pump-probe techniques. Our experiments
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of up to AU$50,291 per annum. Start Date: July-August 2025 Additional financial support is available through research and teaching assistance work. The Research Opportunity This PhD research opportunity
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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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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