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microwave circuits, antennas and antenna systems for CubeSat and related space applications. Undertake full-wave electromagnetic simulation and numerical modelling of microwave and antenna components using
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to: Design, model and optimise microwave circuits, antennas and antenna systems for CubeSat and related space applications. Undertake full-wave electromagnetic simulation and numerical modelling of microwave
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connections between the Maslov index and the Evans function investigate fast-slow decompositions using geometric and asymptotic methods apply analytical and numerical methods to travelling-wave stability
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bridge the gap between abstract geometric theory and numerical implementation for genuine multiple-timescale (MTS) problems (i.e., systems involving more than two distinct timescales). The successful
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that underlie astrophotonic applications demonstrated skills in devising and performing optical laboratory experiments demonstrated skills in scientific / numerical programming and data analysis excellent
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research activities including laboratory experiments, numerical modelling (FEM/CFD), and development of AI models to optimise drilling processes. Translate research into outcomes by building prototypes
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in scientific / numerical programming and data analysis excellent collaboration skills, with a proven ability to work effectively in a multidisciplinary team a keen, self-motivated interest in
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workplace open, supportive and safe for everyone. Our research excellence is recognised by numerous prizes and awards to individual staff members and the award of over $7 million in research funding each year