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adapt a model of reef ecology from the Great Barrier Reef to the Red Sea. The model will use available data but new field studies are anticipated to help parameterise important processes. This is an
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Job no:520746 Work type:Full Time Location:Crawley Categories:Engineering and Mathematical Sciences, Social Sciences Lead numerical modelling of carbonate sand for offshore foundations, support
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Lead numerical modelling of carbonate sand for offshore foundations, support research outcomes, and contribute to publications and student supervision. Full-time appointment on a fixed term basis
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Acknowledgement of Country CSIRO acknowledges the Traditional Owners of the land, sea and waters, of the area that we live and work on across Australia. We acknowledge their continuing connection
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Research Infrastructure (ACCESS-NRI), and is focused on coupling the Ice-sheet and Sea-level System Model (ISSM) with the ACCESS-AM3 atmosphere model. The long-term goal is to integrate this coupling
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appointment on a fixed term basis until March 2029. Base salary range: Level C, $144,143 – $165,809 p.a. plus 17% superannuation. About the area The School of Earth and Oceans at The University of Western
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, and PhD students conducting research focussed on ocean dynamics, connectivity, hydrodynamic model development and observing system design. The team are based in the School of Biological Earth and
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Acknowledgement of Country CSIRO acknowledges the Traditional Owners of the land, sea and waters, of the area that we live and work on across Australia. We acknowledge their continuing connection
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the Centre for Offshore Foundation Systems (COFS), within the School of Earth and Oceans (SEO). COFS, established in 1997 as an ARC Special Research Centre, is a world-leading research centre in
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Acknowledgement of Country CSIRO acknowledges the Traditional Owners of the land, sea and waters, of the area that we live and work on across Australia. We acknowledge their continuing connection