Professor Abdelhalim Ebaid
Professor Abdelhalim Ebaid
Department of Mathematics, Faculty of Science, University of Tabuk P.O. Box 741, Tabuk 71491, Saudi
Verified email at
Cited by
Cited by
Numerical analysis of magnetic field effects on Eyring-Powell fluid flow towards a stretching sheet
NS Akbar, A Ebaid, ZH Khan
Journal of magnetism and Magnetic Materials 382, 355-358, 2015
Exact solitary wave solutions for some nonlinear evolution equations via Exp-function method
A Ebaid
Physics Letters A 365, 213–219, 2007
Effects of magnetic field and wall slip conditions on the peristaltic transport of a Newtonian fluid in an asymmetric channel
A Ebaid
Physics Letters A 372, 4493–4499, 2008
Peristaltic transport in an asymmetric channel through a porous medium
AE E.F. Elshehawey, N.T. Eldabe, E.M. Elghazy
Applied Mathematics and Computation 182, 140–150, 2006
A new analytical and numerical treatment for singular two-point boundary value problems via the Adomian decomposition method
A Ebaid
Journal of computational and applied mathematics 235 (8), 1914-1924, 2011
A new numerical solution for the MHD peristaltic flow of a bio-fluid with variable viscosity in a circular cylindrical tube via Adomian decomposition method
A Ebaid
Physics Letters A 372, 5321–5328, 2008
The generalized Kudryashov method for nonlinear space–time fractional partial differential equations of Burgers type
AA Gaber, AF Aljohani, A Ebaid, JT Machado
Nonlinear Dynamics 95 (1), 361-368, 2019
Exact analysis for the effect of heat transfer on MHD and radiation Marangoni boundary layer nanofluid flow past a surface embedded in a porous medium
EH Aly, A Ebaid
Journal of Molecular liquids 215, 625-639, 2016
Exact solutions for the transformed reduced Ostrovsky equation via the F-expansion method in terms of Weierstrass-elliptic and Jacobian-elliptic functions
A Ebaid, EH Aly
Wave Motion 49 (2), 296-308, 2012
Exact analytical solution of the peristaltic nanofluids flow in an asymmetric channel with flexible walls and slip condition: application to the cancer treatment
A Ebaid, EH Aly
Computational and mathematical methods in medicine 2013, 2013
Advances in the Adomian decomposition method for solving two-point nonlinear boundary value problems with Neumann boundary conditions
EH Aly, A Ebaid, R Rach
Computers & Mathematics with Applications 63 (6), 1056-1065, 2012
Exact solutions for the generalized Klein–Gordon equation via a transformation and Exp-function method and comparison with Adomian’s method
A Ebaid
Journal of Computational and Applied Mathematics 223, 278–290, 2009
Analysis of projectile motion in view of fractional calculus
A Ebaid
Applied mathematical modelling 35 (3), 1231-1239, 2011
An improvement on the Exp-function method when balancing the highest order linear and nonlinear terms
A Ebaid
Journal of Mathematical Analysis and Applications 392 (1), 1-5, 2012
A reliable aftertreatment for improving the differential transformation method and its application to nonlinear oscillators with fractional nonlinearities
AE Ebaid
Communications in Nonlinear Science and Numerical Simulation 16 (1), 528-536, 2011
Remarks on the homotopy perturbation method for the peristaltic flow of Jeffrey fluid with nano-particles in an asymmetric channel
A Ebaid
Computers & Mathematics with Applications 68 (3), 77-85, 2014
Medical applications for the flow of carbon-nanotubes suspended nanofluids in the presence of convective condition using Laplace transform
H Saleh, E Alali, A Ebaid
Journal of the association of Arab universities for basic and applied …, 2017
Application of Laplace transform for the exact effect of a magnetic field on heat transfer of carbon nanotubes-suspended nanofluids
A Ebaid, MA Al Sharif
Zeitschrift für Naturforschung A 70 (6), 471-475, 2015
Approximate periodic solutions for the non-linear relativistic harmonic oscillator via differential transformation method
AEH Ebaid
Communications in Nonlinear Science and Numerical Simulation 15 (7), 1921-1927, 2010
New exact solutions for boundary-layer flow of a nanofluid past a stretching sheet
EH Aly, A Ebaid
Journal of Computational and Theoretical Nanoscience 10 (11), 2591-2594, 2013
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