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research will combine innovations in brine-to-cement technologies with advances in low-carbon binders such as reactive magnesium oxide cement (RMC) and belite-calcium sulfoaluminate (BCSA) systems
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processes, ion exchange and solvent extraction. Ultimately, the candidate will develop and test hybrid systems using combinations of these technologies, to find low cost and environmentally sustainable
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exciting research will combine innovations in brine-to-cement technologies with advances in low-carbon binders such as reactive magnesium oxide cement (RMC) and belite-calcium sulfoaluminate (BCSA) systems
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in economics or a related field. The position requires expertise in either experimental, empirical, or theoretical methods or, ideally, a combination of these methods. Excellent communication skills in
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will combine innovations in brine-to-cement technologies with advances in low-carbon binders such as reactive magnesium oxide cement (RMC) and belite-calcium sulfoaluminate (BCSA) systems. The successful
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of multimodal transportation systems. Particular attention is paid to new vehicle technologies and data sources; as well as the combination of traditional traffic flow theory concepts with new empirically derived
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, characterization, and applications of sustainable construction materials derived from desalination waste. This exciting research will combine innovations in brine-to-cement technologies with advances in low-carbon
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, neural and behavioral data (Allen et al., 2018; Miller et al., 2019; Pedersini et al., 2023). We combine ophthalmological, neuroimaging and behavioral data, and incorporate deep learning methods
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combinations of these technologies, to find low cost and environmentally sustainable to reduce environmental impacts of desalination waste streams whilst recovering minerals of economic importance
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technologies and data sources; as well as the combination of traditional traffic flow theory concepts with new empirically derived models and data science ideas. Applicants must have received a PhD in