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conversion of biomass into high-value platform chemicals and bio-slurry fuels. The project builds on our patented and published bench-scale work, aiming to scale up the process to continuous operation using
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, computational modelling, and data-driven alloy design to: Understand the mechanisms of local austenite-to-ferrite transformation in low-alloy steels; Develop frameworks to predict and control
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other national, international longitudinal studies, and administrative data sets, to examine the mechanisms and processes of key social and emotional core competencies that can be cultivated in schools
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are particularly difficult to treat, with poor treatment outcomes and high relapse rates. However, current treatments are moderately effective at best. Given available therapies are designed to target known core
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are supported by quantum mechanical theoretical formalisms. Our fundamental findings yield promise for future applications in electronics, optoelectronics, spintronics, information processing and storage, sensing
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of light, focusing on controlled light-matter interactions at the nanoscale. Driven by the fascinating optical physics and photonic applications across various fields, my work spans many topical areas in