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Apply now Job no:501600 Work type:Full time Location:Hobart Categories:Research Focused Undertake state-of-the-art research in 3d modelling of Antarctic glacial isostatic adjustment Join a
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$85,555 - $116,094 p.a. (*PhD entry level $108,156 p.a.) plus 17% super Pioneer research in modelling heterogeneous populations through collaboration with leading institutions to advance mathematical
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climate resilience. Working within a world-class research environment, you’ll combine your skills in plant and crop physiology, modelling, phenotyping, data science, and statistics to uncover insights
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-dimensional model of Antarctic glacial isostatic adjustment Full Time, 3.5 year fixed-term position based in Hobart About the opportunity This postdoctoral research position will work on reconstruction
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AUSTRALIAN NATIONAL UNIVERSITY (ANU) | Canberra, Australian Capital Territory | Australia | 7 days ago
and validation of key personality frameworks, with a particular focus on the HEXACO model and Schwartz's values theory. Collaborate on cultural adaptation of instruments, ensuring conceptual and
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or chemistry, or applied mathematics. Demonstrated evidence of computational modelling experience, including code development and data analysis. Ideally experience using one or more of the following: Molecular
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Associate with experience in numerical modelling and a passion for Antarctica. With quantitative skills that include programming and ideally also ice sheet modelling, you will lead a novel investigation into
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responsible for drafting data collection tools, coordinating feedback with study partners, co-facilitating the system mapping workshops, descriptive model development and testing with sector stakeholders. It
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in the relevant discipline area, such as computational/theoretical physics or chemistry, or applied mathematics. Demonstrated evidence of computational modelling experience, including code development
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applied mathematics. Demonstrated evidence of computational modelling experience, including code development and data analysis. Ideally experience using one or more of the following: Molecular dynamics