2006
DOI: 10.1016/j.amc.2005.04.008
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A different approach for solving the nonlinear Fredholm integral equations of the second kind

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Cited by 20 publications
(18 citation statements)
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“…for all i = 0, n. According to the contraction condition (iii), we get the inequality (22). (22), since lim…”
Section: The Convergence Analysismentioning
confidence: 95%
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“…for all i = 0, n. According to the contraction condition (iii), we get the inequality (22). (22), since lim…”
Section: The Convergence Analysismentioning
confidence: 95%
“…For the numerical solution of Fredholm integral equations, Galerkin methods are used in [8,9,12,14,46] and [53]. Other methods use spline functions and wavelets (see [5,46,47,50]), product integration (see [9,29]), homotopy analysis techniques (see [2]), homotopy perturbation and Adomian decomposition method (see [3] and [18]), polynomial interpolation procedures and suboptimal trajectories (see [22] and [26]), multigrid methods (see [9,39]). Nyström techniques are used in [8,9,15,16,28,48] and [58].…”
mentioning
confidence: 99%
“…The comparison between the approximate solutions obtained by our Haar wavelet method, with the methods in [10] and [11] is given in Table 2. We see that there is a good agreement in the results between these methods.…”
Section: Example 52 Consider the Following Nonlinear Fredholm Integmentioning
confidence: 99%
“…The problem of finding numerical solution for integral equation is one of the oldest problems in applied mathematics and many computational methods are proposed in this area (see [1], [3] and [5] xT   .The necessary and sufficient conditions of existence and uniqueness of the solution for the above problem can be found in [8]. Here, it is assumed that the problem, which is being considered.…”
Section: The Journal Of Mathematics and Computer Sciencementioning
confidence: 99%