<p>Effect of axial magnetic force number (<i>N</i><sub>2</sub>) on the tangential velocity distribution (<i>g</i>) when <i>N</i><sub>1</sub> = 1, <i>N</i><sub>3</sub> = 0.5 and <i>Bt</i> = 6.</p
<p>Effect of ϕ on axial velocity for Cu when a = 0.7, b = 0.6, γ = π/2, d = 0.8, x = 0, η = 0.7, Br ...
<p>Axial velocity <i>u</i> variation with <i>x</i> = 0.2, <i>t</i> = 0.1, <i>ϵ</i> = 0.1.</p
<p>Velocity and temperature distribution showing the effect of magnetic parameter <i>M</i> when <i>Ω...
<p>Effect of axial magnetic force number (<i>N</i><sub>2</sub>) on the axial velocity distribution (...
<p>Effect of tangential magnetic force number (<i>N</i><sub>3</sub>) on the tangential velocity dist...
<p>Effect of axial magnetic force number (<i>N</i><sub>2</sub>) on the tangential induced magnetic f...
<p>Effect of axial magnetic force number (<i>N</i><sub>2</sub>) on the axial induced magnetic field ...
<p>Effect of magnetic Reynolds number (<i>Re</i><sub><i>m</i></sub>) on the axial velocity distribut...
<p>Effect of magnetic Reynolds number (<i>Re</i><sub><i>m</i></sub>) on the tangential velocity dist...
<p>Effect of magnetic Reynolds number (<i>Re</i><sub><i>m</i></sub>) on the axial induced magnetic f...
<p>Effect of magnetic Reynolds number (<i>Re</i><sub><i>m</i></sub>) on the tangential induced magne...
<p>Effect of m on axial velocity for Ag when a = 0.7, b = 0.6, γ = π/2, d = 0.8, x = 0, η = 0.7, Br ...
<p>Effect of ϕ on axial velocity for Ag when a = 0.7, b = 0.6, γ = π/2, d = 0.8, x = 0, η = 0.7, Br ...
<p>Effect of m on axial velocity for TiO<sub>2</sub> when a = 0.7, b = 0.6, γ = π/2, d = 0.8, x = 0,...
<p>The effect of parameter <i>φ</i> (solid volume fraction) on axial velocity.</p
<p>Effect of ϕ on axial velocity for Cu when a = 0.7, b = 0.6, γ = π/2, d = 0.8, x = 0, η = 0.7, Br ...
<p>Axial velocity <i>u</i> variation with <i>x</i> = 0.2, <i>t</i> = 0.1, <i>ϵ</i> = 0.1.</p
<p>Velocity and temperature distribution showing the effect of magnetic parameter <i>M</i> when <i>Ω...
<p>Effect of axial magnetic force number (<i>N</i><sub>2</sub>) on the axial velocity distribution (...
<p>Effect of tangential magnetic force number (<i>N</i><sub>3</sub>) on the tangential velocity dist...
<p>Effect of axial magnetic force number (<i>N</i><sub>2</sub>) on the tangential induced magnetic f...
<p>Effect of axial magnetic force number (<i>N</i><sub>2</sub>) on the axial induced magnetic field ...
<p>Effect of magnetic Reynolds number (<i>Re</i><sub><i>m</i></sub>) on the axial velocity distribut...
<p>Effect of magnetic Reynolds number (<i>Re</i><sub><i>m</i></sub>) on the tangential velocity dist...
<p>Effect of magnetic Reynolds number (<i>Re</i><sub><i>m</i></sub>) on the axial induced magnetic f...
<p>Effect of magnetic Reynolds number (<i>Re</i><sub><i>m</i></sub>) on the tangential induced magne...
<p>Effect of m on axial velocity for Ag when a = 0.7, b = 0.6, γ = π/2, d = 0.8, x = 0, η = 0.7, Br ...
<p>Effect of ϕ on axial velocity for Ag when a = 0.7, b = 0.6, γ = π/2, d = 0.8, x = 0, η = 0.7, Br ...
<p>Effect of m on axial velocity for TiO<sub>2</sub> when a = 0.7, b = 0.6, γ = π/2, d = 0.8, x = 0,...
<p>The effect of parameter <i>φ</i> (solid volume fraction) on axial velocity.</p
<p>Effect of ϕ on axial velocity for Cu when a = 0.7, b = 0.6, γ = π/2, d = 0.8, x = 0, η = 0.7, Br ...
<p>Axial velocity <i>u</i> variation with <i>x</i> = 0.2, <i>t</i> = 0.1, <i>ϵ</i> = 0.1.</p
<p>Velocity and temperature distribution showing the effect of magnetic parameter <i>M</i> when <i>Ω...