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through field-based surveys, and from ground-based sensors, proximal sensors and UAVs and satellites. These data are often used to drive process models, that ultimately are used to optimise aspects
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photoelectrochemical fuel production. The group has established an advanced research platform for electrochemical and photoelectrochemical energy conversion, including electrochemical workstations, a solar simulator, an
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for electrochemical and photoelectrochemical energy conversion, including electrochemical workstations, a solar simulator, an Incident Photon-to-Current Efficiency (IPCE) measurement system and a customised roll-to
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to combine experimental data analysis with phenomenological studies and contribute to the LHCb simulation framework, working closely with QCD phenomenologists at Monash. This role forms part of the final
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responsibilities will include: Research: Lead and support research activities in power electronics, power system stability, hardware-in-the-loop testing, real-time simulation, oscillation source identification, and
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people who discover them The Opportunity Join an ARC-funded research project developing numerical methods to simulate the flow of dense viscous liquids through a deformable granular mush. The project aims
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focused on the development and application of recycled and waste-derived materials for advanced engineering systems. The role will emphasise computational modelling, simulation, and data-driven approaches
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focused on the design and development of advanced power electronic systems. The primary role will involve the design, simulation, and validation of power electronics, including converter design
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: emerging mobility, mixed traffic modelling, connected and automated vehicles, micromobility, experimental design using driving simulators, virtual reality (VR) and augmented virtual testing, and test tracks
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underwater vehicles. We will explore advanced non-parametric mapping techniques based on our prior work in the area of Gaussian Process based Simultaneous Localisation and Mapping (SLAM) and recent advances