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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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completion of a PhD in geomechanics, energy engineering, geophysics, and/or geodynamics. An established record of scientific achievements in geomechanics and geomechanical numerical modelling, including
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experience (or equivalent experience in engineering practice) and expertise at an appropriate level in geotechnical engineering Expertise in either geotechnical centrifuge modelling, field testing or numerical
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SRH’s Program 1 (Process Integration and Sustainability) and undertake a new research activity under Project 1.2.4 – Numerical Modelling of Electric Smelting Furnace Phenomena: Melting of Direct Reduced
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broad range of contemporary health-care related issues including: • Health Services Innovation • Integrated Care Models • Health Workforce Development • Symptom Management. What you need to succeed
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Australian National University | Canberra, Australian Capital Territory | Australia | about 2 months ago
cell biology, molecular biology, immunology, CRISPR-Cas9 technology and working with pre-clinical cancer models. You will have a proven track record of research achievement and the ability to articulate
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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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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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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