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with UWA and NGI investigators to support the broader research project, including developing predictive methods for monopiles and validating models through centrifuge testing. Contribute to research
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remuneration valued to $138,750 - $163,685 total rem (pro rata) pa, including salary component $117,246 - $138,429 (pro rata) pa (Academic Level B), employer contribution to superannuation and annual leave
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methods for monopiles and validating models through centrifuge testing. Contribute to research dissemination through publications, conferences, and supervision of students. About you PhD or equivalent
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researcher with a Doctorate in a relevant discipline, skilled in both quantitative and qualitative methods. You collaborate effectively, producing high-quality, publishable work while managing priorities
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AUSTRALIAN NATIONAL UNIVERSITY (ANU) | Canberra, Australian Capital Territory | Australia | 3 months ago
simulations to examine protein structure and function. This includes using advanced sampling methods and free energy calculations. The role involves publishing research in peer-reviewed journals, presenting
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for simulation and data analysis, along with experience using high-performance computing environments, is required, and experience using structure prediction and/or machine learning methods is desirable. Please
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scripting for simulation and data analysis, along with experience using high-performance computing environments, is required, and experience using structure prediction and/or machine learning methods is
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Australian National University | Canberra, Australian Capital Territory | Australia | about 2 months ago
independent research in molecular biology and biophysics, focusing on computational simulations to examine protein structure and function. This includes using advanced sampling methods and free
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software such as redcap, R, python. Experience in clinical trial management and coordination, including regulating clinical research with a large human subjects component. Strong knowledge of ICH Guidelines
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”). This includes using structured light and angular momentum transfer to manipulate nano- and micron-sized particles in and around cells. By developing new methods to generate quantitative measurements