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Mesoscale models are numerical tools which resolve atmospheric processes of spatial scales between 2 and 1000 km. They solve the conservation equations of mass, momentum, internal energy and diverse ...
They differ by the physical approximation (anelastic vs. compressible) or by the type of the numerical method. Microscale models are used, for example, for large-eddy simulations (LES) of turbulence, ...
Seismic numerical modeling is a technique for simulating the wave propagation in the earth. The aim is to predict the seismogram, given an assumed structure of the subsurface. Real subsurface ...
The main goal is to allow easy comparison between methods for calculating anelastic-dependent seismic properties, but the VBRc can also be used for calculating steady state viscosity, pure elastic ...
We describe computer simulations of thermal convection and magnetic field generation in Jupiter’s deep interior: that is, its convective dynamo. Re ...
The Proceedings of the ICM publishes the talks, by invited speakers, at the conference organized by the International Mathematical Union every 4 years. It covers several areas of Mathematics and it ...
Nanomechanical resonators realized from tensile-strained materials reach ultralow mechanical dissipation in the kHz to MHz frequency range. Tensile-strained crystalline materials that are compatible ...
M3AS focuses on the non-trivial interplay between math, math. modelling of real sys. & math. & computer methods oriented towards the quant. & qual. anal. of real physical sys.
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