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to evaluate control performance, synchronization accuracy, stability, and energy efficiency under varying environmental conditions. • Plan and execute scaled experimental validation in wave flume and basin
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to waves and currents • Simulate turbulence-driven mixing, oxygen distribution, and nutrient/waste transport in aquaculture environments • Conduct field measurements in coastal fish farms using
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matter, axions, and gravitational waves, by pioneering the weak coupling frontier through the use of cutting-edge quantum sensors and devices. QUP operates under a distinctive organizational model in which
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Barometer 2024, wave two), reflecting our long-standing designation as Scotland’s University for Sporting Excellence. We are proud holders of a Silver institutional award from the Athena Swan Charter, in
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in Computational Electromagnetics will be responsible for developing theoretical models and high-performance computer codes for modelling the interaction between electromagnetic waves and dielectric
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. Strong research record in distributed fiber-optic sensing, DAS, wave propagation, structural health monitoring, passive seismology, geophysical imaging, or related areas. Experience processing large-scale
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distributed fiber-optic sensing, passive seismology, urban geophysics, seismic imaging, wave propagation, or near-surface characterization. Experience processing large-scale DAS or seismic datasets, including
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between multiscale flows involving ocean surface waves, submesoscale current, turbulence, and wind actions. The research aims to derive a highly accurate and efficient theoretical models by extending newly
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: offshore wind turbines, wave tank experiments, fluid-structure interactions, sensors for offshore structural health monitoring, software development, machine learning and advanced AI modelling, and previous
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infrastructure and surrounding terrain. The work can include physics-based modelling of e.g., various events and wave propagation through different media, signal processing, large-scale data analysis, algorithm