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use imaging surveys at X-ray, optical, infrared and radio wavelengths to measure the emission from stars, active galactic nuclei, warm dust, atomic hydrogen and relativistic electrons. Spectroscopic
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, including Monash Graduate Research Office (MGRO) Travel Grant valued up to $1,265. Additional support from the Monash Energy Institute Ongoing support and guidance from the Indigenous Research Team
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technologies that may one day surpass conventional silicon electronics. Much of this work sits within the Monash–Warwick Alliance Major Project I lead on atomically thin materials for low‑energy electronics — a
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spatial and temporal dimensions Quantitative functional lung imaging using near field X-ray speckle Ultra-low dose Computed Tomography for lung, brain or breast imaging. Dark field X-ray imaging Translating
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to $47,000 per annum for outstanding students). Additional financial support is available through research and teaching assistance work. The opportunity The PhD research will be part of an Australian Research
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wavelengths. The Gaia Data Release 4 will be made available in 2026, making it a perfect time to work on first science projects from this revolutionary mission. "Wobbling stars reveal their hidden companions
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and may include travel to one of our collaborator labs above. All the projects will make use of the world-class instruments at the Monash Centre for Electron Microscopy with unique electron-optics
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considered. Masters by Engineering Science (Research) degree students have the option to upgrade to a PhD degree based on academic performance during their candidature. Application Process To apply for a
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value of AU$37,000 per annum (up to $47,000 per annum for outstanding students). Additional financial support is available through research and teaching assistance work. About the Program As a candidate
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I work on a wide range of topics with my local group and in collaboration with members of three large international collaborations. The central focus of my research is to understand how the observed