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respond to sound in ways that influence physiology, root function and pollination. This project will combine experiments, analysis and multiphysics modelling to establish credible mechanisms, limits and
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ALMA MATER STUDIORUM - UNIVERSITA' DI BOLOGNA - - DIPARTIMENTO DI FISICA E ASTRONOMIA | Italy | about 2 months ago
Infrastructure? No Offer Description The activities will focus on two main, complementary research lines. 1) Analytical-numerical modelling of the tsunami wave generation process from various source types
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time. The PhD will combine experiments, modeling, and numerical simulations. The experimental work will involve the design and fabrication of bubble metascreens using 3D printing, laser cutting, and
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experiments. Creating computational and analytical models to match experimental data. Fabricating and testing novel medical sensors technologies. Basic Qualifications Ph.D. in biomedical engineering, medical
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to the weather prediction and climate projections. This is mainly due to our lack of understanding of cloud/snow ice microphysics and over-simplified representation in models. On a broader sense, although weather
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of time-varying photonic metamaterials. First-principles mathematical modeling of optic-wave physics in canonical geometries under space-time-varying polarization responses. Computer programming and
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defects and reinforcement integrity. In addition, the high dispersion of waves, the multimodal nature of signals, the influence of steel–grout–rock coupling, the geometric variability of the reinforcing
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of electromagnetic wave propagation in complex media. The candidate should demonstrate experience in the theoretical and numerical modelling of electromagnetic structures and systems. Experience in areas such as
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metasurfaces for absorption at THz frequencies Modeling and design of hyperuniform structured metasurfaces Absorption properties analysis Microfabrication of metasurfaces in cleanroom environment ANR TERASENS
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-reciprocity of spin waves Angular Momentum of Magnons Magnetically doped Transition Metal Dichalcogenide Thin Films via Molecular Beam Epitaxy Modeling of a magnonic diode based on spin-wave non-reciprocity in