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vulnerabilities that can be therapeutically exploited. The PhD student will investigate how the cell of origin and PKCα inhibition influence MHC-II expression and adaptive immune activation. Using iPSC-derived
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, there is an urgent demand for accurate data on ion-beam collisions with atomic and molecular targets for the development and maintenance of fusion reactors, treatment planning in hadron therapy, and
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adoption of lithium-ion batteries (LIB) in electric vehicles and energy storage globally is generating a significant volume of waste end-of-life lithium-ion batteries. The battery separator, 5
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in the central Yorke Peninsula, South Australia. This project aims to constrain the sources, generation mechanisms, and migration pathways of these gases. Groundwater sampling in the field, including
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5.2: Deep Eutectic Solvents (DES) are increasingly being studied for their potential role in lithium-ion battery recycling. DES has limitation for industrial application due to its poor performance in
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alternative to lithium-ion battery. The PhD research will address challenges in proton battery research and improve energy density, fast charging and discharging capability, stability and low
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at the national level. Through a combination of extant personal oral stories and archival sources, together with new digital humanities representations of data about infection and vaccination rates, this research
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constant source of inspiration. Our culture is one that welcomes all and embraces diversity consistent with our Staff Values and Behaviour Framework and our Values of integrity, respect, collegiality
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) methodologies. This initiative seeks to address the growing demand for sustainable battery production, ensuring responsible sourcing, and minimising environmental impact while promoting ethical practices across
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alternative to fossil-derived chemical and energy sources. Expected Outcomes Demonstrated yields and separation of high-purity LGO and CMF under optimised conditions A detailed kinetic model and mechanistic