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This project aims to advance the field of human movement science by addressing the challenges encountered when developing a low-cost, automated system for screening the movement of pre-elite student
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inadequate, lacking the qualitative foresight crucial to Australia’s transition to digital and automated technologies and net zero carbon emissions. This fellowship will innovate new ethnographic methods
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approaches to explore problems associated with membrane charge transport. Ion channels are proteins that control the movements of charged molecules across cell membranes to enable electrical activity in
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weeks. Applicants will be assessed in accordance with Curtin University international sanctions compliance , controlled goods and technologies compliance, and foreign interference governance
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mechanisms of online media platforms by granting users full control over their sensitive information. Innovation. To meet users' varying privacy demands, this project put forward a graph-based user
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transport and energy conversion. The incorporation of 2D nanomaterials as sacrificial layers enables precise control over nanochannel architecture, ensuring enhanced selectivity, mechanical robustness, and
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behaviour interventions, randomised control trials and longitudinal studies. As a registered psychologist, he has focused primarily on the behaviours of alcohol consumption, smoking, illicit drug use, mental
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augmentations such as project energy connect, Humelink, Marinus Link ETC Lack of available accurate generator and reinforcement models Protection and emergency control scheme modelling challenges. The research
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controlled environment. The candidate will be supervised by ARC Laureate Fellow Professor Hongxia Wang, and they will have the opportunity to engage in a dynamic environment with members of the solar cells
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description of how these proteins respond to physiological stimuli to control electrical signalling the body. This project, in collaboration with researchers at Cornell University, USA, is funded by