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According to McKay, the boundary layer thickness retards the intraparticle diffusion.
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Thermal boundary layer thickness reduction.
Consequently, the momentum boundary layer thickness reduces.
The results also show that momentum boundary layer thickness decreases whereas thermal boundary layer thickness increases.
The intercepts C are proportional to the boundary layer thickness.
Therefore finally concentration boundary layer thickness is increases.
The constant I could be attributed to boundary layer thickness.
Also the associated boundary layer thickness decreases when m increases.
From Figure 5, the boundary layer thickness increases with β.
Therefore, boundary layer thickness and viscosity is simplified to linear relation with intercept boundary layer thickness is 0, when viscosity is 0. Based on the experimental results, we obtain a new correlation (Eq. 16) to estimate boundary layer thickness.
Further, an increase in the thermal boundary layer thickness and decrease in momentum boundary layer thickness was observed for the increasing values of the magnetic parameter.
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