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Research Fellow in Geodynamic Modeling & Surface Processes Job No.: 693562 Location: Clayton campus Employment Type: Full-time Duration: 2-year fixed-term appointment Remuneration: $86,195
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of observational data, comparison of multi-wavelength data against model predictions, and/or demonstrated knowledge of multi-messenger science. The successful candidate will also have demonstrated analytical and
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, including mixed effects, survival, growth curve and prediction models, to research in neuropsychology, epidemiology, neurodegenerative disease and cognitive disorders. We are seeking someone with a doctoral
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specifically targeting anomaly detection and predictive modelling to drive real world pharmaceutical outcomes. Working within a collaborative, multidisciplinary environment across Monash and CSL Behring, you'll
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the Acute Brain Injury leadership team, you’ll contribute to data curation, protocol development, predictive modelling, and novel analytics for large-scale neurocritical care datasets and manuscript
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. Working closely with the Acute Brain Injury leadership team, you’ll contribute to data curation, protocol development, predictive modelling, and novel analytics for large-scale neurocritical care datasets
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focus on foundation models, medical image analysis, and multimodal healthcare data integration. In this role, you will: Develop novel federated AI methodologies, foundation model adaptation techniques
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to develop and implement evolutionary models. About Monash University At Monash , work feels different. There’s a sense of belonging, from contributing to something ground breaking – a place where great things
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physics. You will undertake high-impact research using data from the Large Hadron Collider (LHC) Run 3, with a focus on better understanding the Standard Model and identifying potential Beyond the Standard
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transition to Net Zero. You will be responsible for developing novel numerical methods to model continuum problems in a two-liquid/granular medium and for interpreting the results physically. These models will