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Postdoctoral Research Associate in Global Environment Modelling of Soil Organic and Inorganic Carbon
- $121,054 + 17% superannuation About the opportunity The School of Civil Engineering at The University of Sydney is recruiting for a Postdoctoral Research Associate in Global Environment Modelling of Soil
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global climate action through modelling and data-driven Antarctic research 3 year fixed-term full-time role based in Hobart with relocation assistance considered About the opportunity We are looking for a
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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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modelling, student mentoring, and direct collaboration with industry and university partners to ensure research outcomes are translatable and impactful. Your key responsibilities will be in: lead experimental
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join the Neurodegeneration Pathobiology Laboratory, led by Professor Adam Walker, which focuses on molecular, biochemical, cellular, and mouse model studies of the causes and potential treatments
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an integrated model of care for early management of individuals with moderate-to-severe traumatic brain injury (msTBI) who have pre-existing mental health difficulties. Reporting to Associate Professor, Grahame
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delivery systems. The Post-doctoral fellow will play a central role in executing the research plan, from in vitro mechanistic studies to in vivo disease models, with the goal of identifying and validating
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Full time, 3-year fixed term, located on the Camperdown Campus at the Faculty of Science Join a cutting-edge ARC Linkage project advancing fish seascape ecology and connectivity modelling to inform
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reviewed journals demonstrated experience in mineralogical analysis using XRD, XRF and chemical procedures experience in geochemical modelling in aqueous systems is highly desirable skills and abilities
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hands-on research role provides substantial intellectual freedom. In this role you will lead the development of advanced osteochondral organoid models, employing cutting-edge bioceramic 3D printing