Stability and convergence results based on fixed point theory for a generalized viscosity iterative scheme.
De La Sen, M. (2009)
Fixed Point Theory and Applications [electronic only]
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De La Sen, M. (2009)
Fixed Point Theory and Applications [electronic only]
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Xia, Ye (2008)
Journal of Inequalities and Applications [electronic only]
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Chai, Xinkuan, Li, Bo, Song, Yisheng (2010)
Fixed Point Theory and Applications [electronic only]
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Norbert Schneider (1983)
Aplikace matematiky
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First, a result of J. W. Schmidt about the monotone enclosure of solutions of nonlinear equations is generalized. Then an iteration method is considered, which is more effective than other known methods. For this method, monotone enclosure statements are also proved.
Nguyen Buong, Nguyen Dinh Duong (2011)
Fixed Point Theory and Applications [electronic only]
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Moudafi, A. (2003)
JIPAM. Journal of Inequalities in Pure & Applied Mathematics [electronic only]
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Agarwal, Ravi P., Verma, Ram U. (2009)
Fixed Point Theory and Applications [electronic only]
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Ansari, A.H., Moslehian, M.S. (2005)
International Journal of Mathematics and Mathematical Sciences
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Verma, Ram U. (2001)
JIPAM. Journal of Inequalities in Pure & Applied Mathematics [electronic only]
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Ioannis Argyros, Hongmin Ren (2008)
Open Mathematics
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We re-examine a quadratically convergent method using divided differences of order one in order to approximate a locally unique solution of an equation in a Banach space setting [4, 5, 7]. Recently in [4, 5, 7], using Lipschitz conditions, and a Newton-Kantorovich type approach, we provided a local as well as a semilocal convergence analysis for this method which compares favorably to other methods using two function evaluations such as the Steffensen’s method [1, 3, 13]. Here, we provide...