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PhD Opportunity - Indigenous (Energy) Job No.: 685291 Faculty: Faculty of Information Technology, Monash Business School and Faculty of Engineering Location: Caulfield or Clayton campuses Duration
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guardrails or clear precedent, humanity now contends with a technology that has potential to reshape valued parts of our social life, individually and collectively. In assessing the impacts of generative
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exciting, rewarding directions The Opportunity: We are seeking expressions of interest talented candidates who wish to apply for a PhD to undertake research in digital health technology and implementation
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, this stage begins in Year 2 of the MCom degree and takes one year to complete. Provided you meet the agreed conditions, you will then progress to the PhD, which involves high quality research training
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to biomedical applications. Students will have access to our X-ray imaging laboratory in the New Horizons Research Centre for developing new technology. We also regularly perform experiments at the Australian
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I supervise a wide range of PhD projects on experimental research into the electronic properties of novel quantum materials including topological insulators, graphene, and other atomically thin two-dimensional materials. I am interested in creating a low-power topological transistor, in which an...
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agreed conditions, you will then progress to the PhD, which involves high quality research training and career development, culminating in a written thesis. The PhD stage will typically take three and a
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, this stage begins in Year 2 of the MCom degree and takes one year to complete. Provided you meet the agreed conditions, you will then progress to the PhD, which involves high quality research training
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with leading researchers in the field, ensures access to high quality research platforms and equips you with the skills and knowledge to make a substantial impact. A PhD involves extensive, independent
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with leading researchers in glass science/engineering and diffraction physics/crystallography in Australia and around the world. "Local structure and symmetry in metallic glasses" (with Assoc Prof Scott