<p>Variation in heat transfer coefficient <i>Z</i> for curvature parameter <i>k</i> when <i>ϵ</i> = 0.2, <i>t</i> = 0.1, <i>x</i> = 0.2, <i>β</i> = 0.5, <i>E</i><sub>1</sub> = 0.3, <i>E</i><sub>2</sub> = 0.2, <i>E</i><sub>3</sub> = 0.1, <i>Br</i> = 0.1, <i>H</i> = 0.8, <i>Bi</i><sub>1</sub> = 10, <i>Sc</i> = 0.3, <i>Bi</i><sub>2</sub> = 0.5, <i>Du</i> = 0.5, <i>Sr</i> = 0.5 and Pr = 2.</p
<p>Variation in temperature <i>θ</i> for Schmidt number <i>Sc</i> when <i>ϵ</i> = 0.2, <i>t</i> = 0....
In this, we will compare the geometries (cylindrical & rectangular) for different inclination angle ...
<p>Effect of <i>M</i> on heat transfer coefficients for <i>α</i> = −0.95, <i>Pr</i> = 0.72, <i>Nr</i...
<p>Variation in heat transfer coefficient <i>Z</i> for Schmidt number <i>Sc</i> when <i>ϵ</i> = 0.2,...
<p>Variation in heat transfer coefficient <i>Z</i> for Brinkman number <i>Br</i> when <i>ϵ</i> = 0.2...
<p>Variation in concentration <i>ϕ</i> for curvature parameter <i>k</i> when <i>ϵ</i> = 0.2, <i>t</i...
<p>Heat transfer coefficient <i>Z</i> variation with <i>t</i> = 0.1, <i>ϵ</i> = 0.1.</p
<p>Temperature profile <i>θ</i>(<i>η</i>) for different values of curvature parameter <i>γ</i>.</p
<p>Variation in temperature <i>θ</i> for heat transfer Biot number <i>Bi</i><sub>1</sub> when <i>ϵ</...
<p>Variation in concentration <i>ϕ</i> for heat transfer Biot number <i>Bi</i><sub>1</sub> when <i>ϵ...
<p>Variation in temperature <i>θ</i> for Hartmann number <i>H</i> when <i>ϵ</i> = 0.2, <i>t</i> = 0....
Heat transfer coefficient varies with mass flow rate of different longitudinal distance.</p
<p>Variation in temperature <i>θ</i> for Dufour number <i>Du</i> when <i>ϵ</i> = 0.2, <i>t</i> = 0.1...
Heat transfer coefficient varies with mass flow rate of different winding angle.</p
Heat transfer coefficient varies with mass flow rate of different outside tube diameter.</p
<p>Variation in temperature <i>θ</i> for Schmidt number <i>Sc</i> when <i>ϵ</i> = 0.2, <i>t</i> = 0....
In this, we will compare the geometries (cylindrical & rectangular) for different inclination angle ...
<p>Effect of <i>M</i> on heat transfer coefficients for <i>α</i> = −0.95, <i>Pr</i> = 0.72, <i>Nr</i...
<p>Variation in heat transfer coefficient <i>Z</i> for Schmidt number <i>Sc</i> when <i>ϵ</i> = 0.2,...
<p>Variation in heat transfer coefficient <i>Z</i> for Brinkman number <i>Br</i> when <i>ϵ</i> = 0.2...
<p>Variation in concentration <i>ϕ</i> for curvature parameter <i>k</i> when <i>ϵ</i> = 0.2, <i>t</i...
<p>Heat transfer coefficient <i>Z</i> variation with <i>t</i> = 0.1, <i>ϵ</i> = 0.1.</p
<p>Temperature profile <i>θ</i>(<i>η</i>) for different values of curvature parameter <i>γ</i>.</p
<p>Variation in temperature <i>θ</i> for heat transfer Biot number <i>Bi</i><sub>1</sub> when <i>ϵ</...
<p>Variation in concentration <i>ϕ</i> for heat transfer Biot number <i>Bi</i><sub>1</sub> when <i>ϵ...
<p>Variation in temperature <i>θ</i> for Hartmann number <i>H</i> when <i>ϵ</i> = 0.2, <i>t</i> = 0....
Heat transfer coefficient varies with mass flow rate of different longitudinal distance.</p
<p>Variation in temperature <i>θ</i> for Dufour number <i>Du</i> when <i>ϵ</i> = 0.2, <i>t</i> = 0.1...
Heat transfer coefficient varies with mass flow rate of different winding angle.</p
Heat transfer coefficient varies with mass flow rate of different outside tube diameter.</p
<p>Variation in temperature <i>θ</i> for Schmidt number <i>Sc</i> when <i>ϵ</i> = 0.2, <i>t</i> = 0....
In this, we will compare the geometries (cylindrical & rectangular) for different inclination angle ...
<p>Effect of <i>M</i> on heat transfer coefficients for <i>α</i> = −0.95, <i>Pr</i> = 0.72, <i>Nr</i...