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AUSTRALIAN NATIONAL UNIVERSITY (ANU) | Canberra, Australian Capital Territory | Australia | 8 days ago
candidate will contribute to the development of high-efficiency perovskite solar cells and large-area flexible modules, with a focus on scalable deposition, device fabrication, module integration
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AUSTRALIAN NATIONAL UNIVERSITY (ANU) | Canberra, Australian Capital Territory | Australia | 6 days ago
Researcher to join a major ARENA-funded project developing low-cost, scalable perovskite–silicon tandem solar modules. The successful candidate will contribute to the development of high-efficiency perovskite
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integration, low-voltage distribution-network modelling, optimisation-based power flow analysis, and standards development, producing impactful publications, open-source code, and datasets. Supervision and
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focused on the development and application of recycled and waste-derived materials for advanced engineering systems. The role will emphasise computational modelling, simulation, and data-driven approaches
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soil nitrogen biogeochemical processes and ecological resilience that support the development of self-sustaining plant communities in newly constructed soil systems and engineered landforms within
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focused on the design and development of advanced power electronic systems. The primary role will involve the design, simulation, and validation of power electronics, including converter design
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, evidenced by such things as publications, development of new research initiatives, competitive research funding, and contributions to policy and practice. Demonstrated experience in designing and conducting
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on joint projects, translating research into practice including commercialisation of UQ intellectual property, and applying best practice research methodologies. Supervision and Researcher Development
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centre for discovery, innovation and integrative research strategies, clinical product development and actions that translate research into improved treatment and disease prevention strategies. The centre
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to make drug development cleaner, greener and more sustainable by developing biological catalysts of fluorination chemistry based on catalytically versatile and robust enzymes created by ancestral