A Comparative Study Between two Explicit and Minimal Strategies for the Case of Magnetohydrodynamical Falkner–Skan Flow over a Permeable Wall
In this paper, two efficient and powerful explicit and minimal approaches based on the Hankel- Padé method and Laplace Adomian decomposition method coupled with Padé approximation, respectively, are discussed and employed to obtain approximate results of similarity solutions for the magnetohydrodynamical (MHD) Falkner-Skan boundary layer flow over a permeable wall. The values of skin friction coefficients of the problem are computed with high accuracy. The presented results through tables and figures show the efficiency, reliability, and accuracy of the two presented approaches. Finally, the effects of various model parameters on the boundary layer flow are investigated graphically
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Articles in the same Issue
- Invariance, Conservation Laws, and Exact Solutions of the Nonlinear Cylindrical Fin Equation
- Influence of Wall Properties on the Peristaltic Flow of a Nanofluid in View of the Exact Solutions: Comparisons with Homotopy Analysis Method
- Analyses of S-Box in Image Encryption Applications Based on Fuzzy Decision Making Criterion
- Theoretical Study of the Electronic Spectrum of Disulfur Monoxide
- The Gravitational Origin of the Higgs Boson Mass
- Optimal Campaign Strategies in Fractional-Order Smoking Dynamics
- First Exact Solutions for Flows of Rate Type Fluids in a Circular Duct that Applies a Constant Couple to the Fluid
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- Stego Optical Encryption Based on Chaotic Baker’s Map Transformation
- A Systematic Investigation on Magnetism and Phase Stability of Cobalt
- A Comparative Study Between two Explicit and Minimal Strategies for the Case of Magnetohydrodynamical Falkner–Skan Flow over a Permeable Wall
- Regarding ‘Information Preservation and Weather Forecasting for Black Holes’ by S. W. Hawking