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PhD Scholarships – optimising blood product use in Australia Job No.: 695405 Location: St Kilda Road, Melbourne Employment Type: Full-time (part-time considered) Duration: 3-year fixed-term
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and information theory, with opportunities to collaborate with partners in robotics, autonomous systems and AI safety. Access to modern computing facilities and experimental platforms (e.g. robotic
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. Demonstrated experience in one or more of: medical or optical imaging (e.g. OCT, MRI, CT); image processing and analysis of 2D/3D data; computational modelling, simulation, or optical system design. Proficiency
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, with a primary focus on the interface between reactor output and the ship's overall power demand. This work will be carried out on a nuclear reactor simulator, with the possibility of validating results
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optimisation and multi-fidelity active learning, creating a practical route to discovering new molecules for optoelectronic devices. About HetSys: Harnessing Data, Modelling and Simulation for Real‑World Impact
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machine learning and conventional optimisation techniques. 2. To design and optimise magnonic primitives for wave-based neuromorphic computing, including programmable devices enabling nonlinear activation
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simulation results with experimental data. This project will integrate advanced AI techniques, including machine learning for parameter optimisation (e.g., Bayesian optimisation, reinforcement learning), AI
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trace element distributions at high spatial resolution. The resulting data will be integrated into thermodynamic models (e.g. FACTSage-based approaches) to support process optimisation and control in
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appointment. You can provide evidence of excellent study results. You have experience within the field of transportation or supply chains. Experience with optimisation and simulation techniques and technical
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Supervisors: Dr Ioanna Dimitriou , Dr Oliver Fisher Programme Length: Four years Contract Type: Full-time Prospective Start Date: October 2026 The positions are filled in a first-in, first-served