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Job no:517174 Work type:Fixed term - Full-time Campus:Adelaide Categories:Level A, Level B (Level A/B) $102,024 to $135,932 per annum plus an employer contribution of 17% superannuation applies. Fixed term, full time position available for 2 years with a possibility of extension. About the...
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intermediate processes to restore DES composition for reuse. It will investigate the performance of existing DES(s) on mixed battery chemistries to propose a synergistic ionometallurgy design. Lastly, it will
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across all areas. PhD candidates under this program are connected with academic supervisors and industry-based researchers, to co-design innovative, applied research projects. Through their doctoral
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research, including experimental design, execution and manuscript writing across multiple projects. The path to Adelaide University We are on an exciting path to Adelaide University as we prepare to open our
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-unique, National Heritage-listed Park Lands that surround the City of Adelaide. Historically, the Park Lands have been an irresistible temptation to City and State Governments, which have, in places
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record in a real-world environment. We see internships as a catalyst for innovation within the organisation. As such, you'll be involved in both operational and exploratory tasks. Your internship will be a
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across all areas. PhD candidates under this program are connected with academic supervisors and industry-based researchers, to co-design innovative, applied research projects. Through their doctoral
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of better prevention and public health policies in rural and remote areas. This position will contribute to the design of qualitative research components, coordinate qualitative data collection from rural
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the impact of metallic impurities of black mass on the DES 2.0 process, upgrading the DES 2.0 by developing new hydrophobic DESs with high selectivity. Project 2 (2 PhD students): Design and synthesis of high
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-year stipend scholarship to support pioneering research on wave energy converters. The successful candidate will work on cutting-edge experimental design and numerical modeling to better understand