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" (with Prof Kris Helmerson) "High-bandwidth continuous magnetic sensing of an ensemble of electric spins" (with Prof Kris Helmerson) "Developing a spatially sensitive optical magnetometer catheter probe
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different conditions of structures for condition monitoring and response prediction under various loading scenarios. Rapid structural evaluation can be conducted with the developed digital twin and identified
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comparing our experimental observations to predictions made using the Standard Model of Particle Physics. I am a member of the LHCb collaboration, one of the four large experiments at the Large Hadron
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the evolution of learnt features from lower to higher layers in neural networks and how this progression facilitates final layer predictions using linear functions. • Examine why training of deep neural networks
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I supervise projects in particle physics. My main emphasis is on phenomenology, comparison of predictions with experimental measurements. I follow developments in flavour physics: weak decays
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approaches to modelling CO2 injectivity. The successful candidate will work with researchers at the University of Adelaide and Shell Global Solutions to develop an analytical tool that predicts the nature
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of their remnants (including predictions for GW sources); mixing and transport processes in the stellar interior; nucleosynthesis and the origin of elements, including galacto-chemical evolution - which elements