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of spray droplets by the action of wind over ocean waves (i.e. spume). In this role, you will develop numerical, experimental, and (ideally) theoretical models within the topic of surfactant-laden droplet
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to apply. The position will be under the direction of Professor Anthony Yeates and will primarily involve optimisation of a numerical magnetic field model for the global solar magnetic field against
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temporal properties: ultrabroadband supercontinua, intense sub-cycle field transients, and few-femtosecond ultraviolet pulses, among many others. We combine numerical modelling with experiments to study the
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fluid dynamicists and stellar astrophysicists (observational and theoretical). Applications are encouraged particularly from those with experience in numerical simulations, fluid dynamics and/or stellar
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-based PFR performance rating system. With knowledge and understanding of hydraulics and/or hydrology, you will have expertise in experiments, fieldwork or numerical modelling and/or developing successful
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-based PFR performance rating system. With knowledge and understanding of hydraulics and/or hydrology, you will have expertise in experiments, fieldwork or numerical modelling and/or developing successful