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-fidelity finite element models to investigate surface wave propagation in soft biological tissues, forming the foundation for subsequent statistical and machine learning frameworks that integrate
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the development of high-fidelity finite element models to investigate surface wave propagation in soft biological tissues, forming the foundation for subsequent statistical and machine learning
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of high-fidelity finite element models to investigate surface wave propagation in soft biological tissues, forming the foundation for subsequent statistical and machine learning frameworks that integrate
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and wave conditions. Contribute to the project communication and dissemination activities. Achievement of the expected progression within Post Doc and Senior Post Doc is transferable between the Irish
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to the development of concepts of hydrogen storage by using floating foundations and necessary improvements. Investigate logistics of offloading under variable wind and wave conditions. Contribute to the project
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on designing mm-wave transceivers for the 28GHz/39GHz 5G bands. The goal is to design a low-power and wide-band low-noise amplifier, phase shifter, power amplifier that supports both the 5G bands incorporating
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to accommodate potential waves of coastal migrants. With this in mind the objectives of the project are: Enhanced Population Exposure Assessment: Improve existing methodologies for assessing population exposure
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administration. Experience and knowledge in any of the following areas would be highly valued: AUV and UAV mapping, marine monitoring experience (ADCP, Kestral, wind, wave, buoy), sediment analysis (particle size
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, use and analysis of multispectral UAV data, coastal measurements (ADCP, Kestral, wind, wave, buoy), sediment analysis (particle size) and interpretation. The appointee will work directly with the PI
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, wave, buoy), sediment analysis (particle size) and interpretation; photogrammetry; Irish offshore renewables. The appointee will work directly with PI’s at University College Cork and will be expected