download COMSOL Multiphysics 4.2.1.166 32bit 64bit full crack

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COMSOL Multiphysics 4.2.1.166 x86 x64 full
COMSOL Multiphysics 4.2.1.166 x86 x64 full
Working with COMSOL Multiphysics 4.2.1.166 full license
Working with COMSOL Multiphysics 4.2.1.166 full license

Description: A program for finite-element calculations of complex scientific and technical problems. The COMSOL Multiphysics 4.2.1.166 package allows you to model almost all physical processes that are described by partial differential equations. The program contains various solvers that can quickly cope with even the most complex tasks, and the simple structure of the application provides simplicity and flexibility of use. The solution of any problem is based on the numerical solution of partial differential equations by the finite element method. The range of tasks that are amenable to modeling in the program is extremely wide.
The set of special modules in the program covers almost all spheres of applications of partial differential equations.
COMSOL Multiphysics (Femlab) – a modeling package that solves systems of nonlinear partial differential equations by the finite element method in one, two and three dimensions. It allows to solve problems from the field of electromagnetism, the theory of elasticity, the dynamics of liquids and gases, and chemical gas dynamics. Femlab also makes it possible to solve the problem both in a mathematical formulation (in the form of a system of equations) and in the physical (the choice of a physical model, for example, the model of the diffusion process). Undoubtedly, in any case, the system of equations will be solved, and the difference is only in the possibility of using physical systems of units and physical terminology. In the so-called physical mode of operation, it is also possible to use predetermined equations for most phenomena occurring in science and technology, such as the transfer of heat and electricity, the theory of elasticity, diffusion, wave propagation and fluid flow.
New features: Particle tracing, recreating the material structure of objects from images, and importing topographic data with elevation profiles.
More in detail
A new mechanism for accelerated calculation of particle trajectories in the new Particle Tracing Module provides an accurate calculation of particle interactions in such areas as computational fluid dynamics, electromagnetism, acoustics and others. The LiveLink module for CAD Creo Parametric provides two-way integration with the latest releases of this powerful design system from PTC.
Particular attention should be given to the modeling of material structures from photographs or scanning data-JPG, JPEG, BMP, PNG and GIF formats are supported for processing. The DEM (Digital Elevation Map) function helps quickly load topographic profiles of surface heights for applications such as calculations of current media, structural calculations and electromagnetics into the model.
Improved post-processing mechanism helps to process virtual experiment data faster by building interactive layers and isosurfaces using convenient detail controllers. The updated graphical interface allows you to conveniently carry out large parametric data cleaning and get visualization for graphs with response surfaces. Simulation results can be checked by comparing solutions corresponding to different grid steps, different time steps of observations, or different values ​​of input parameters.
Interpolation curves can now be constructed from tabular data for the coordinates X, Y or X, Y, Z – so you can create new two-dimensional and three-dimensional geometric shapes. External sources of radiation can be specified in the heat transfer module as sources with infinite removal and size or as point sources with finite removal – such techniques can be used to simulate incident sunlight.
The new interface for simulation of electromagnetic phenomena in the MEMS module combines solid-state mechanics and electrostatics with a dynamic grid – this allows modeling the deformation of a structure under the influence of piezoelectric pulses. These modeling tools can be used in applications such as modal or amplitude-frequency analysis in the calculation of an asymmetric electric resonator, or calculations on the operating voltage.
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