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Level B: $122,212 - $145,121 p.a. plus 17% super ARC funded stochastic optimisation project on correlated restless bandits / collaborate with leading international investigators / develop independent
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AUSTRALIAN NATIONAL UNIVERSITY (ANU) | Canberra, Australian Capital Territory | Australia | 11 days ago
. Key responsibilities Develop and optimise perovskite solar cells and perovskite–silicon tandem devices. Develop scalable thin-film deposition and large-area module fabrication processes. Conduct device
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AUSTRALIAN NATIONAL UNIVERSITY (ANU) | Canberra, Australian Capital Territory | Australia | 10 days ago
leading Australian research institutions and industry partners, including Halocell Energy, Tindo Solar and Greatcell Solar Materials. Key responsibilities Develop and optimise perovskite solar cells and
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international collaboration. Key responsibilities include: Design, synthesise and optimise electrocatalysts and photoelectrochemical materials for hydrogen and sustainable fuel production. Conduct electrochemical
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-quality publications, new research concepts, competitive grant applications, HDR supervision, and industry and international collaboration. Key responsibilities include: Design, synthesise and optimise
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-quality publications, new research concepts, competitive grant applications, HDR supervision, and industry and international collaboration. Key responsibilities include: Design, synthesise and optimise
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experience includes: experience developing substantial mathematical or scientific software experience with modern software development practices, including version control, testing, profiling, optimisation
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complexity theory, quantum algorithms, optimisation and quantum sensing. Your work will contribute to the development of new computational frameworks and approaches spanning sensing optimisation, adaptive
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A) and help to lead the charge in discovering, fabricating, and optimising emerging 2D halide perovskite materials. Positioned at the dynamic intersection of materials science, optoelectronics
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and research outcomes develop and optimise metabolomic assays for the analysis of cerebrospinal fluid and plasma samples contribute to competitive research grant applications and funding opportunities