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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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will focus on two target systems: Natural media: Study the propagation of slow waves in model soft media (hydrogels and suspensions) and their interaction with a target, with a focus on the generated
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for simulation and modeling of wave dynamics, and for uncertainty quantification of extreme events. The project will combine stochastic mathematical models of wave physics with advanced computational methods
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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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to overcome the limitations of single-panel partitions. The work will involve analytical and numerical modeling of wave propagation and transmission, the design of hybrid ABH architectures, and the optimization
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ALMA MATER STUDIORUM - UNIVERSITA' DI BOLOGNA - - DIPARTIMENTO DI FISICA E ASTRONOMIA | Italy | about 1 month 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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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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as bow and limb shocks, pickup ion acceleration, the growth of various wave modes in the mass loaded solar wind, cometary ray structures, ionosheath plasma depletion layers, drift mirror waves
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., Pettersson, H., Behrens, A., Männik A., 2018. Comparing a 41-year model hindcast with decades of wave measurements from the Baltic Sea. Ocean Engineering, 152, 57–71. https://doi.org/10.1016/j.oceaneng
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Infrastructure? No Offer Description Mission: Analyze the dynamics associated with atmospheric and oceanic heat waves in the Euro-Mediterranean region through climate simulations with the SPEEDO model. Functions