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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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the Hvar Observatory, University of Zagreb – Faculty of Geodesy, on the HrZZ project “Solar Chromosphere in ALMA's Eyes: Newly Ascending High-Resolution Interferometry and MHD Modeling to Reveal Hidden Wave
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scenario. Objectives - Create forward models of the wave-interaction and crack propagation processes. - Use inversion methods to extract defect information from the scattering data. - Develop a probabilistic
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to compute modal characteristics, as well as dispersion and attenuation curves of guided waves along the tunnel. The models will simulate various environmental and damage scenarios, such as thermal loading and
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a MSc degree in Mechanical Engineering, Electrical Engineering or Physics with very strong academic track record. Solid theoretical modeling skills and fascination for wave phenomena are required. We
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process remains coarsely parametrised in spectral wave models, in particular because the frequency distribution of dissipated energy remains unknown. The standard modelling approach follows the work
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what they do. Join us and be a part of the diverse Caltech community. LIGO Laboratory (the Laser Interferometer Gravitational-wave Observatory) seeks a highly motivated and skilled LIGO Lab DevOps and
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Magnetodydrodynamic waves in the solar atmosphere School of Mathematical and Physical Sciences PhD Research Project Self Funded Prof Robertus von Fay-Siebenburgen Application Deadline: Applications
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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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and networks, and more. The selected candidate will conduct experimental research activities, which may include the modeling and demonstration of linear and nonlinear microwave devices and circuits