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Effects of sundry parameters on the quantities of interest are studied through graphs.
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The effects of sundry parameter such as the volume fraction of Cu particles, the Nusselt number and the wavelength of the wavy surface on the flow and temperature fields are investigated.
Is a complex process that requires the consideration of sundry parameters, which are often difficult to quantify.
The impacts of sundry parameters are illustrated graphically and the engineering interest physical quantities like skin friction, Nusselt and Sherwood number are examined by computing numerical values.
The governing partial differential equations are transformed into a set of ordinary differential equations: The non-linear coupled systems of equations have been solved for various values of sundry parameters via an efficient analytical method, optimal homotopy analysis method (OHAM) (for details see Liao (2003), Fan and You (2013)).
Particularly, the obtained results are presented graphically to explore the impact of all the sundry parameters for velocity, pressure gradient, and pressure rise.
The results of different rheological properties for particle and fluid phase are discussed mathematically as well as graphically for different sundry parameters.
To further separate the effects of these three parameters, we examined a model that included categorical value of change of all these parameters (model 7).
What are the important effects of the different parameters?
Ziegler, M. et al. Effects of plasma parameter on morphological and electrical properties of superconducting NbN fabricated by MO-PEALD.
To explore the effect of further parameters, Figure 5 shows how the outcome depends on parameters K and R+.
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