padé method
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2020 ◽  
Vol 2020 ◽  
pp. 1-7
Author(s):  
Feng Gao ◽  
Chunmei Chi

In this paper, we propose an efficient method for constructing numerical algorithms for solving the fractional initial value problem by using the Pade approximation of fractional derivative operators. We regard the Grunwald–Letnikov fractional derivative as a kind of Taylor series and get the approximation equation of the Taylor series by Pade approximation. Based on the approximation equation, we construct the corresponding numerical algorithms for the fractional initial value problem. Finally, we use some examples to illustrate the applicability and efficiency of the proposed technique.


2018 ◽  
Vol 61 (1) ◽  
pp. 109-133 ◽  
Author(s):  
Hidehito Nagao ◽  
Yasuhiko Yamada
Keyword(s):  

2017 ◽  
Vol 57 (6) ◽  
pp. 391 ◽  
Author(s):  
Francisco Marcelo Fernández ◽  
Javier Garcia

We draw attention on the fact that the Riccati-Padé method developed some time ago enables the accurate calculation of bound-state eigenvalues as well as of resonances embedded either in the continuum or in the discrete spectrum. We apply the approach to several one-dimensional models that exhibit different kind of spectra. In particular we test a WKB formula for the imaginary part of the resonance in the discrete spectrum of a three-well potential.


2014 ◽  
Vol 69 (5-6) ◽  
pp. 263-272
Author(s):  
Hadi Roohani Ghehsareh ◽  
Saeid Abbasbandy ◽  
Marwan A. Kutbi ◽  
Ali Zaghian

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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