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an important part of a Monash AI institute collaboration between the Arts and IT faculties around technology for orientation and mobility for Blind and Low Vision people. The PhD project will undertake
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are available across a broad range of research areas, including: ● Solvent-based direct lithium extraction ● Low energy capture of industrial carbon dioxide ● Membranes for recovery and re-use of battery metals
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My research focuses on the theory of strongly correlated phenomena in cold atomic gases and electron systems. Particular topics of interest include low-dimensional quantum systems, superconductivity
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be combined into rapid, low-cost assessment workflows to map environmental vulnerabilities, trace contamination pathways, and prioritise targeted water cycle infrastructure interventions across
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, particle image velocimetry and quantitative image-based analysis of aerosol transport. Design, fabrication and bench-top validation of an adaptive soft-mist inhaler research prototype. Low-inspiratory-flow
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The goal of my research is to synthesise and characterise functional low-dimensional materials with atomic-scale precision and tailored electronic, optoelectronic, magnetic and chemical properties
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-dimensional materials. I am interested in creating a low-power topological transistor, in which an electric field can switch a material from a conventional insulator (“off”) to a topological insulator (“on
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electrolyte materials for next-generation rechargeable metal batteries. Research directions include: Advanced electrolytes for rechargeable multivalent batteries Development of low-cost electrolyte systems
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I supervise a wide range of projects in stellar astrophysics, with a focus on low and intermediate-mass stars, which have masses similar to or slightly larger than our Sun. This work is carried out
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of Excellence for Future Low-Energy Electronics Technologies. I have projects available within the following areas, all of which can be tailored to either honours or PhD level. "Quantum impurities in quantum