30 additive-manufacturing Fellowship positions at The University of Queensland in Australia
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of Queensland is seeking a Principal Research Fellow to lead internationally recognised research in carbon management for the mining industry. This is a unique and prestigious opportunity for an accomplished
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, utilise best practice research methodologies, and participate in project discussions. Actively participate with industry research partners to progress applied outcomes of fundamental research objectives
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strong industry collaboration and international engagement and is expected to commence in October 2025. Key responsibilities will include: Research: Conduct high-quality research and publish in reputable
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and will work closely with our systems biology and fermentation team to develop a novel microbial cell factory and implement strategies for the engineering of metabolic pathways in yeast, particularly Y
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an exciting industry. At this level it is expected that you will also contribute to service and engagement roles and activities. Key responsibilities will include: Research: Conduct research into the morphology
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research in young people, to join the NCYSUR Psychology research team led by Professor Leanne Hides. This team, working alongside industry partners, conducts applied clinical and translational research
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service activities and build strong partnerships with industry, government, professional bodies, and the broader community. This is a research focused position. Further information can be found by viewing
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values through active participation, collaboration, and leadership. Support academic operations, contribute to internal committees, and begin building external partnerships with industry, government, and
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, collaboration, and leadership. Support academic operations, contribute to internal committees, and begin building external partnerships with industry, government, and professional bodies. This is a research
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collaborating with industry partners on a project aimed at developing kinetic Monte Carlo simulations to model epitaxial growth processes. The goal is to control and optimise the growth of nanoscale structures