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planning and re-planning in dynamic space environments. Your work will help shape next-generation space systems with real-world impact across industry and end users. The team Reporting to the Principal
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university. This multi-disciplinary research is expected to lead to high-impact publications, and conference presentations, while generating knowledge to advance bio-adhesion technologies that mimic
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to pursue competitive research funding, publish high-quality outputs, and contribute to a dynamic and inclusive research culture within the School. We are looking for candidates with their knowledge and
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Dani (Senior Talent Advisor), via talentsupport@rmit.edu.au or visit our Careers page for more contact information - https://www.rmit.edu.au/careers RMIT is an equal opportunity employer committed
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Dani (Senior Talent Advisor), via talentsupport@rmit.edu.au or visit our Careers page for more contact information - https://www.rmit.edu.au/careers RMIT is an equal opportunity employer committed
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Dani (Senior Talent Advisor), via talentsupport@rmit.edu.au or visit our Careers page for more contact information - https://www.rmit.edu.au/careers RMIT is an equal opportunity employer committed
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experimental and theoretical research, contribute to HDR supervision, support teaching in mechanical engineering courses, and work collaboratively within a dynamic team advancing sustainable transport and
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Overview: Drive experimental research in next-generation propulsion, focusing on rotating detonation engines and high-enthalpy systems for future high-speed flight Work in a multidisciplinary team
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radiation therapy. The primary aim of this research is to develop real-time target tracking and/or dynamic imaging algorithms for implementation within radiotherapy and medical imaging. Within our research
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disease patients using radiation therapy. The primary aim of this research is to develop real-time target tracking and/or dynamic imaging algorithms for implementation within radiotherapy and medical