Thermally radiated squeezed flow of magneto-nanofluid between two parallel disks with chemical reaction
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Publisher
Springer Science and Business Media LLC
Link
http://link.springer.com/article/10.1007/s10973-018-7482-6/fulltext.html
Reference41 articles.
1. Stefan MJ. Versuch Uber die scheinbare adhesion, Akademie der Wissenschaften in Wien. Mathematik-Naturwissen. 1874;69:713.
2. Kuzma DC. Fluid inertia effects in squeeze films. Appl Sci Res. 1967;18:15–20.
3. Siddiqui AM, Irum S, Ansari AR. Unsteady squeezing flow of a viscous MHD fluid between parallel plates, a solution using the homotopy perturbation method. Math Model Anal. 2008;13:565–76.
4. Sweet E, Vajravelu K, Van Gorder RA, Pop I. Analytical solution for the unsteady MHD flow of a viscous fluid between moving parallel plates. Commun Nonlinear Sci Numer Simul. 2011;16:266–73.
5. Khan H, Qayyum M, Khan O, Ali M. Unsteady squeezing flow of Casson fluid with magnetohydrodynamic effect and passing through porous medium. Math Probl Eng. 2016;2016:4293721.
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