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                volcanology and magmatic processes through the combination of detailed field studies on modern and ancient volcanoes with numerical modelling techniques. Key components of this position include leading 
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                achievement Lead a dynamic, university-wide program empowering students to learn collaboratively Full time, 3 year Fixed-Term opportunity based in Hobart or Launceston About the opportunity In collaboration 
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                the University’s mission Develops content that sparks conversation and inspires curiosity within our community Full-time, fixed-term position until October 2026, based in Hobart About the opportunity The Program 
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                the University’s mission Develops content that sparks conversation and inspires curiosity within our community Full-time, fixed-term position until October 2026, based in Hobart About the opportunity The Program 
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                medical education Promote and maintain a strong Safety and Wellbeing culture within the Medicine Program Ongoing, full-time position based in Tasmania About the opportunity This newly created Statewide 
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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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                Postdoctoral Research Associate with experience in numerical modelling to lead investigations into the dynamic component of the Antarctic ice sheet’s observed decadal variability. Although it is often overlooked 
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                Develop and run 3-D numerical models of mantle plume dynamics Full time, 2 Year Fixed-Term position, based in Hobart About the opportunity We are seeking a highly motivated Research Associate in Geodynamics 
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                and sea-ice model in collaboration with project partners. Refine and optimize the coupled ACCESS-OM3-ISSM model for improved computational performance and numerical reliability. Collaborate 
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                other related samples for analytical analyses using existing methods within the CODES Analytical Laboratories (CAL). CODES contributes to UTAS’ strategies of creating a zero-carbon economy and responding