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AUSTRALIAN NATIONAL UNIVERSITY (ANU) | Canberra, Australian Capital Territory | Australia | 3 months ago
quantum nanophotonics with optical metasurfaces. The project work will involve both experimental investigations and theoretical modelling, with a view to obtain and publish original and innovative results
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for disease prevention and control. ODeSI has extensive experience in operational research and field surveys (including international projects), predictive risk mapping and modelling (spatial epidemiology
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modelling for mining and metallurgical processes. Ability and willingness to obtain and maintain an Australian government security clearance in the future Role Requirements: Australian citizenship (not
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and Analytics, and the Software Innovation Institute. The Intelligent Systems activity cluster within the School focuses on the computational modelling and design of intelligent agents in complex real
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quantum nanophotonics with optical metasurfaces. The project work will involve both experimental investigations and theoretical modelling, with a view to obtain and publish original and innovative results
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for earthquake and tsunami early warning. The role will be in the Geophysics Area of the Research School of Earth Sciences (RSES), and will undertake the numerical modelling of elasto-gravity signals generated by
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to work within the Pyrometallurgy Innovation Laboratory. This position will be responsible for undertaking integrated high temperature experimental and thermodynamic modelling studies of metallurgical
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AUSTRALIAN NATIONAL UNIVERSITY (ANU) | Canberra, Australian Capital Territory | Australia | 3 months ago
theoretical modelling, with a view to obtain and publish original and innovative results in leading refereed journals, present research at academic seminars and at national and international conferences, and
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optimisation models (e.g. using MiniZinc) and solving methods to demonstrate the transformative potential of optimisation technology in this application. Collaboration will be key, as you’ll join the DSAI’s
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experimental and theoretical research using microfluidics, high-speed video microscopy, and mathematical modelling to study the interactions between bacteria and algal endosymbionts. Experience in culturing and