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Compressive loading is a more complex case, since the stress tensor components perpendicular to the loading direction can not be neglected. In this case the stress components perpendicular to the loading direction are brought about by the deformation tensor components perpendicular to the loading direction, which results in a deformation of the system in the direction perpendicular to the loading axis. The stress components perpendicular to the loading axis are the principal cause of crack growth. Stress components perpendicular to the loading axis lead to the formation of tensile regions in the interparticle space, and they cause a displacement of the particles in the direction perpendicular to the loading axis. This displacement leads to a deformation of the matrix in the direction perpendicular to the loading axis. When the results of a simulation are presented as a function of the total strain, the strain value at which the first peak in the strain distribution is observed corresponds to the strain at which the system is at a state of equilibrium. It should be stressed that the maximum observed strain values are more than 10,000, and they do not depend on the load direction. The results obtained in the simulation can be presented in terms of the stress-strain diagram and the stress values corresponding to the maximum strain. It should be emphasized that the values of the stress tensor components are independent of the loading direction; it is sufficient for the stress tensor components perpendicular to the loading axis to be obtained only once.
For both the composite and the porous matrix, the simulation of the above two types of cracking was performed within the framework of the numerical procedure described in Mathematical Modeling and Numerical Methods . In short, the study of the problem considered the following model:
When you're looking at a multi-band equalizer, it is first important to understand that audio processing is an anisotropic, and not isotropic, operation, meaning that the process is applied in a different manner depending on the direction a signal moves through the filter. iZotope's Neutron EQ module was designed to be an isotropic, or same-direction, filter, meaning that it operates in the same manner regardless of the direction a signal moves through it. So, for example, a band that is narrow near the upper frequency of a guitar signal will behave the same, regardless of whether that signal is moving toward or away from the speaker. 827ec27edc