We present a unified local and semilocal convergence analysis for secant-type methods in order to approximate a locally unique solution of a nonlinear equation in a Banach space setting. Our analysis includes the computation of the bounds on the limit points of the majorizing sequences involved. Under the same computational cost our semilocal convergence criteria can be weaker; the error bounds more precise and in the local case the convergence balls can be larger and the error bounds tighter than in earlier studies such as [13,714,16,20,21] at least for the cases of Newtons method and the secant method. Numerical examples are also presented to illustrate the theoretical results obtained in this study
We provide new sufficient convergence conditions for the convergence of the Secant method to a local...
We extend the solvability of equations dened on a Banach space using numerically ecient secant-type ...
summary:We provide new sufficient convergence conditions for the convergence of the secant-type meth...
We present a unified local and semilocal convergence analysis for secant-type methods in order to ap...
We present a unified local and semilocal convergence analysis for secant-type methods in order to ap...
We present a new semilocal convergence analysis for Secant method in order to approximate a locally ...
We present two new semilocal convergence analyses for secant-like methods in order to approximate a ...
We present two new semilocal convergence analyses for secant-like methods in order to approximate a ...
We present a new semilocal convergence analysis for Secant methods in order to approximate a locally...
We present a new convergence analysis, for the Secant method in order to approximate a locally uniqu...
We present a new convergence analysis, for the secant method in order to approximate a locally uniqu...
summary:We provide new sufficient convergence conditions for the convergence of the secant-type meth...
We present local and semilocal convergence results for secant-like methods in order to approximate a...
We present new sufficient convergence criteria for the convergence of the secant-method to a locally...
We present new sufficient convergence criteria for the convergence of the secant-method to a locally...
We provide new sufficient convergence conditions for the convergence of the Secant method to a local...
We extend the solvability of equations dened on a Banach space using numerically ecient secant-type ...
summary:We provide new sufficient convergence conditions for the convergence of the secant-type meth...
We present a unified local and semilocal convergence analysis for secant-type methods in order to ap...
We present a unified local and semilocal convergence analysis for secant-type methods in order to ap...
We present a new semilocal convergence analysis for Secant method in order to approximate a locally ...
We present two new semilocal convergence analyses for secant-like methods in order to approximate a ...
We present two new semilocal convergence analyses for secant-like methods in order to approximate a ...
We present a new semilocal convergence analysis for Secant methods in order to approximate a locally...
We present a new convergence analysis, for the Secant method in order to approximate a locally uniqu...
We present a new convergence analysis, for the secant method in order to approximate a locally uniqu...
summary:We provide new sufficient convergence conditions for the convergence of the secant-type meth...
We present local and semilocal convergence results for secant-like methods in order to approximate a...
We present new sufficient convergence criteria for the convergence of the secant-method to a locally...
We present new sufficient convergence criteria for the convergence of the secant-method to a locally...
We provide new sufficient convergence conditions for the convergence of the Secant method to a local...
We extend the solvability of equations dened on a Banach space using numerically ecient secant-type ...
summary:We provide new sufficient convergence conditions for the convergence of the secant-type meth...