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Over 50 years ago at Caltech, Richard Feynman stated that ``Waves easily seen by everyone and which are usually used as an example of waves in elementary courses are water waves. [...] They
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promising imaging technology is proton-acoustics, relying on detecting acoustic waves generated by proton-tissue interaction for real-time in-vivo 3D proton beam imaging and dosimetry. However, proton
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of shaping, steering, and optimising wave propagation far beyond what is possible with conventional antenna arrays. This PhD project contributes to the ENACT project on environment-aware communication modes
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dynamic, optically unpredictable environments, dominated by waves, specular reflection, cloud-dependent illumination, and variable scattering. These factors significantly degrade sensor reliability, leading
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their operational reliability. The PhD student will combine mathematical models, in-house laboratory tests in a wind-wave-current flume (https://research.ncl.ac.uk/amh/ ) and numerical methodology to quantify
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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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that currently dominate industrial solvers. In practical terms, this means that vortices, waves, and other flow disturbances can travel long distances without losing their shape or energy artificially, which is
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application to hazard assessment of trees subject to windthrow in extreme storms and the use of trees in nature-based solutions (e.g. tsunami protection by mangroves). The results of the first phase will then
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practical terms, this means that vortices, waves, and other flow disturbances can travel long distances without losing their shape or energy artificially, which is essential for high-fidelity transient
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through our reaction. The candidate will gain direct experience with the use of synchrotron light, X-ray photoelectron spectroscopy techniques, structural determination techniques (like X-ray standing waves