World Journal of Engineering and Technology

World Journal of Engineering and Technology

ISSN Print: 2331-4222
ISSN Online: 2331-4249
www.scirp.org/journal/wjet
E-mail: wjet@scirp.org
"Numerical Study of Slip Effect of Unsteady MHD Pulsatile Flow through Porous Medium in an Artery Using Generalized Differential Quadrature Method (Comparative Study)"
written by Islam M. Eldesoky, Mohamed H. Kamel, Ramzy M. Abumandour,
published by World Journal of Engineering and Technology, Vol.2 No.2, 2014
has been cited by the following article(s):
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[1] Magnetic field effects on thermal nanofluid flowing through vertical stenotic artery: analytical study
Mathematics, 2022
[2] Deflection Analysis of a Nonlocal Euler–Bernoulli Nanobeam Model Resting on Two Elastic Foundations: A Generalized Differential Quadrature Approach
Shorbagy, IM Eldesoky… - Symmetry, 2022
[3] Pulsatile flow through a circular pipe with porous medium under the influence of time varying pressure gradient: Effects of with and without visco-elastic fluid
Malaya Journal of Matematik, 2020
[4] Joint Effect of Magnetic Field and Heat Transfer on Particulate Fluid Suspension in a Catheterized Wavy Tube
2019
[5] Analyse vibratoire d'un nano-arbre tournant.
2019
[6] Caputo-fabrizio time fractional derivative applied to Viscoelastic MHD fluid flow in the porous medium
2018
[7] Caputo-Fabrizio Time Fractional Derivative Applied to Visco Elastic MHD Fluid Flow in the Porous Medium
2018
[8] Unsteady mixed convection flow through a permeable stretching flat surface with partial slip effects through MHD nanofluid using spectral relaxation method
Open Physics, 2017
[9] Magnetic field effects on peristaltic flow of blood in a non-uniform channel
IOP Conference Series: Materials Science and Engineering, 2017
[10] Influence of Slip Condition on Unsteady Pulsatile Flow through a Porous Medium in a Circular Pipe
Research Journal of Science and Technology, 2017
[11] Application of the GDQ Method to Structural Analysis
International Journal of Mathematics and Computational Science, 2016
[12] Slip Effects on Peristaltic Transport of a Particle-Fluid Suspension in a Planar Channel
Applied Bionics and Biomechanics, 2015
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