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field theory and/or precision computations. Relevant research directions include: - scattering amplitudes, - gravitational-wave observables from QFT techniques and waveform modelling, - their high-energy
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Black Holes as Electromagnetic Sources and Future Gravitational-Wave Targets for LISA”, led by Dr. Aleksandra Olejak. The successful candidate will also work in close collaboration with other researchers
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technologies convert the energy of waves, tides, and river and ocean currents into electricity and have the potential to provide millions of Americans with locally sourced, reliable energy. The Marine Energy
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technologies convert the energy of waves, tides, and river and ocean currents into electricity and have the potential to provide millions of Americans with locally sourced, reliable energy. The Marine Energy
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Work on globally unique experimental data to shape understanding of tsunami inundation of coastlines and interaction with buildings. Job description Tsunami engineering is a field that has grown
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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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Energy Research Group on FLOW-COST: Floating Offshore Wind Cost-Informed Site Selection, an 18-month project funded under the SEAI National Energy Research, Development & Demonstration (RD&D) Programme. It
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experience. Applications are invited for researcher to work with UCC’s Offshore Renewable Energy Research Group on FLOW-COST: Floating Offshore Wind Cost-Informed Site Selection, an 18-month project funded
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experience. Applications are invited for researcher to work with UCC’s Offshore Renewable Energy Research Group on FLOW-COST: Floating Offshore Wind Cost-Informed Site Selection, an 18-month project funded
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established instrumentation requires new approaches to control sound waves with high precision and in confined volumes The position will be embedded within the research group of Dr. Kai Melde (IMSEAM