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In the present investigation, we have studied numerically the peristaltic motion of micropolar fluid through a circular tube without imposing low Reynolds number and long wave length assumption. Galerkin’s finite element method has been used on the governing Navier–Stokes equation in the form of $$\psi - \omega$$ ψ-ω . The current study obtained the microrotation and streamline line directly from...
This paper investigates the thermal effects of magnetohydrodynamic micropolar fluid with hidden phenomenon of heat and mass transfer via Caputo–Fabrizio fractional derivative. Analytical solutions are obtained for velocity field, mass concentration, microrotation and temperature distribution by implementing Fourier Sine and Laplace transform. The general solutions have been expressed in terms of simple...
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