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research program advancing carbon-neutral energy systems modelling for Australia's energy transition. This role focuses on the development and application of advanced forecasting and scenario analysis
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, neurobiological or computational modelling frameworks. Your key responsibilities will involve: Original Research: Conduct original research in the areas of functional and structural neuroimaging, with a focus on
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management; projects for technological and social innovations: e.g. projects for industry disruptions, social intervention projects, and their organisational, financial and business models; project leadership
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social innovations: e.g. projects for industry disruptions, social intervention projects, and their organisational, financial and business models; project leadership and ethics: e.g. managing project teams
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how control parameters (e.g. bucket speed, size, depth, and packing density) influence energy dissipation develop mathematical models to predict and explain these effects collect and analyse data
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density) influence energy dissipation develop mathematical models to predict and explain these effects collect and analyse data, including with the use of machine learning use this knowledge to design
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, contributing to the embedding of Indigenous models of care within the areas of chronic care and outreach programs. This position offers the opportunity to undertake meaningful research that not only strengthens
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, stem cell models, and nanotechnology, within a collaborative and innovative research environment. It is an exciting opportunity to be at the forefront of translational cancer research. Key
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" . The research will further span cutting-edge imaging technologies, single-cell sequencing, metabolomics, proteomics and experimental models ranging from human neurons to mouse and non-human primates. You will be
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) in FPGA design, machine learning or a related field experience in the development of machine learning models using Python and pytorch expertise in two or more of the following technical areas: design