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Errors generally increased with increasing values of the above parameters.
The thermal and solutal boundary layer thicknesses increase with increasing values of the unsteadiness parameter and Eckert number but decrease with increasing values of the buoyancy parameters.
The thermal and solutal boundary layer thicknesses increase with increasing values of the unsteadiness parameter and Eckert number but decrease with increasing values of the buoyancy parameters. .
An algorithm is designed based on minimizing the auxiliary function with increasing values of the parameter.
The decreasing friction coefficient in the tests correlates with increasing values of wear protection.
It is seen that the velocity decreases with increasing values of Gr.
However, it can be higher with increasing values of the density ratio (mu).
We observe that the velocity boundary layer thickness decreases with increasing values of the suction parameter.
These rates both increase with increasing values of the surface moving parameter.
Hence volume of steel used decreases with increasing values of θ.
With increasing values of c this approaches the frequency localization ξ ( x ).
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