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applicants who hold an Australian (or equivalent international) Honours or Master's degree (both in a relevant field), with a significant research component and with first-class honours/H1 awarded. Details
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Degree by Research) degree to be eligible. Must possess a First-Class Honours degree, H2A (or equivalent) or a Masters degree with a significant thesis component. How to Apply The applicant needs to be in
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scholarship package totalling approximately $47,000 per annum tax exempt (2025 rate). A four year Project Expense and Development package of $13,000 per annum. A 60 day Industry Engagement component with
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Recovery Methods: Suggest efficient slag removal or electrolyte recovery strategies for continuous electrolysis operations. Exploring Slag’s Impact Mechanism: Propose a mechanism for slag’s effect
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hold an Australian (or equivalent international) Honour’s or Master’s degree (in a cognate field) with evidence of a significant research component, and with first-class Honours/H1 awarded. Details
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scholarship package totaling approximately $47,000 per annum tax exempt (2025 rate). A four year Project Expense and Development package of $13,000 per annum. A 60 day Industry Engagement component with
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Multiple PhD Scholarships available - Cutting-edge research at the frontiers of Whole Cell Modelling
to modulate protein translation. This project will use RNA cross-linking technology to understand all of the RNA-mediated control elements that contribute to the system of regulation that links metabolic needs
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overall, with no less than 6.0 in each component How to apply For general instructions on how to apply for roles at Monash, please refer to 'How to apply for Monash Jobs '. To express your interest in
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stable operation under reactive capture conditions. Unravelling reaction mechanisms and catalyst structure-performance relationships using advanced characterisation techniques and computational tools
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in conventional silicon solar panels and at present there are no IEC stress tests that appropriately reflect the degradation mechanisms of printed solar devices. This project will develop the urgently