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Field
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Theory. The project also has connections with gravitational-wave physics, with the aim of providing new calculations of key observables, such as waveforms and gravitational radiation. This project also has
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knowledge and advanced transfer learning techniques. The methodology incorporates fundamental radar wave propagation equations into the diffusion process, allowing for more accurate and physically consistent
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work on development of wave energy and offshore wind. Most of our research is focused around work in our wave flume and basin. Further description of the group may be found here: https://vbn.aau.dk/en
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fundamental radar wave propagation equations into the diffusion process, allowing for more accurate and physically consistent image restoration. The developed framework will be able to transfer knowledge
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researcher to join our team and contribute to a project, dedicated to the study of elastic wave transport in microstructured silicon membranes. The researcher will be primarily responsible for the design and
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imaging inside human long bones (https://doi.org/10.1007/978-3-030-91979-5_10). For optimal imaging inside bone, one must consider the challenging 3D wave physics imposed by bone tissue: wave refraction
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to constrain the physics involved in the formation of gravitational wave sources through the study of intermediate evolutionary stages that can be constrained through electromagnetic observations. The candidate
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of the model will largely be built on existing datasets from large scale wave flumes. These datasets will not involve actual swash zone processes, but rather measurements of coastal profile development from
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Posting Details Position Information Job Title Postdoctoral Scholar Position Number PDS-ENGR-08-25 Vacancy Open to All Candidates Department AAH CET Engineering Department Homepage https
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part of the international Refuge-Arctic project (https://www.refuge-arctic.ulaval.ca ) with links to the NASA FORTE project, whose overall objective is to better understand and predict the role played by