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Field
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-doctoral researcher in the area of gravitational wave physics to join and extend our work in gravitational wave data analysis and our contribution to the LIGO Scientific Collaboration and Einstein Telescope
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neighbouring wind farms. This challenge is further complicated at the multi-gigawatt scale by a newly emerging phenomenon: the ability of these massive farms to generate atmospheric gravity waves, leading
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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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processing. 3, Demonstrated expertise in the modelling, design, and optimization of acoustic transducers and metamaterials, with a solid understanding of acoustic wave physics and numerical simulation methods
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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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models). Climate emulators for wave and sea level simulations. Use of Linux-based numerical computing servers. Specific Requirements Knowledge: Coastal morphodynamic processes at different time scales
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calculations. The UCC logistics models simulate installation, operation and maintenance, and decommissioning task by task against hourly wind and wave time series spanning the project lifetime, with Monte Carlo
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ATLANTIS team led by Dr Francisco J. Rodríguez-Fortuño. ATLANTIS investigates new physics and applications of optical and acoustic near-fields by challenging conventional assumptions about wave structure
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against hourly wind and wave time series spanning the project lifetime, with Monte Carlo simulation over weather years and component time-to-failure. The models are currently implemented in MATLAB with
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are seeking a highly motivated postdoctoral researcher to investigate a new link between acoustic waves, spin dynamics, and magnetic resonance relaxation. The project combines fundamental MR physics with