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Numerical results are presented and discussed for the critical velocity and stress distribution for various values of the problem parameters.
We take into consideration 8-and 6-core processors manufactured in 14 nm technology and simulate the temperature distribution for various floorplan designs.
In this study, modeling of temperature distribution for various joint designs of thermoplastics as practised by industry is attempted and simulation is done in ANSYS.
Therefore, it is necessary to study the influence of the stress distribution for various shapes and elevations of air intake for various water levels in the future.
The steady-state temperature distribution for various load cases and the resulting stress and strain within the assembly have both been computed using a finite element simulation.
Numerical results are presented and discussed for the critical velocity, displacement and stress distribution for various values of the problem parameters.
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This study can be extended to more extreme distributions for various meteorological variables.
This paper first demonstrates how to acquire fiber orientation distributions for various member thicknesses from geometrical consideration.
The polymer segment concentration distributions for various distances of a macromolecule from the pore walls are calculated at the critical adsorption point.
Based on the pattern of eigenvalues distributions for various flow configurations, the feasability of applying existing convergence-acceleration techniques like eigenvalue annihilation and relaxation are discussed.
From the analysis results of the proposed method, it is shown that the final stress distributions for various models are sufficiently closer to design stress distributions than existing ones.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com