Miquel Grau-Sánchez

According to our database1, Miquel Grau-Sánchez authored at least 35 papers between 2004 and 2017.

Collaborative distances:
  • Dijkstra number2 of five.
  • Erdős number3 of five.

Timeline

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Bibliography

2017
On the Efficiency of a Family of Steffensen-Like Methods with Frozen Divided Differences.
Comput. Methods Appl. Math., 2017

2015
A family of iterative methods that uses divided differences of first and second orders.
Numer. Algorithms, 2015

2014
Frozen Iterative Methods Using Divided Differences "à la Schmidt-Schwetlick".
J. Optim. Theory Appl., 2014

On the local convergence of a family of two-step iterative methods for solving nonlinear equations.
J. Comput. Appl. Math., 2014

Note on improvements of order and efficiency in some iterative methods for solving nonlinear equations.
Appl. Math. Lett., 2014

2013
On the efficiency of two variants of Kurchatov's method for solving nonlinear systems.
Numer. Algorithms, 2013

On the approximation of derivatives using divided difference operators preserving the local convergence order of iterative methods.
J. Comput. Appl. Math., 2013

Maximum efficiency for a family of Newton-like methods with frozen derivatives and some applications.
Appl. Math. Comput., 2013

2012
Solving non-differentiable equations by a new one-point iterative method with memory.
J. Complex., 2012

Analysing the efficiency of some modifications of the secant method.
Comput. Math. Appl., 2012

On new computational local orders of convergence.
Appl. Math. Lett., 2012

A technique to choose the most efficient method between secant method and some variants.
Appl. Math. Comput., 2012

2011
On Iterative Methods with Accelerated Convergence for Solving Systems of Nonlinear Equations.
J. Optim. Theory Appl., 2011

On the computational efficiency index and some iterative methods for solving systems of nonlinear equations.
J. Comput. Appl. Math., 2011

Frozen divided difference scheme for solving systems of nonlinear equations.
J. Comput. Appl. Math., 2011

Ostrowski type methods for solving systems of nonlinear equations.
Appl. Math. Comput., 2011

Zero-finder methods derived using Runge-Kutta techniques.
Appl. Math. Comput., 2011

2010
Some variants of the Chebyshev-Halley family of methods with fifth order of convergence.
Int. J. Comput. Math., 2010

Variants of a classic Traub's result.
Comput. Math. Appl., 2010

On some computational orders of convergence.
Appl. Math. Lett., 2010

2009
Improving order and efficiency: Composition with a modified Newton's method.
J. Comput. Appl. Math., 2009

Adams-like techniques for zero-finder methods.
Appl. Math. Comput., 2009

Zero-finder methods derived from Obreshkov's techniques.
Appl. Math. Comput., 2009

Some sixth order zero-finding variants of Chebyshev-Halley methods.
Appl. Math. Comput., 2009

2008
An application of an associative learning model to a Morris pool with a single landmark.
Comput. Math. Appl., 2008

Refinements of Aczél, Popoviciu and Bellman's inequalities.
Comput. Math. Appl., 2008

2007
Improvements of the efficiency of some three-step iterative like-Newton methods.
Numerische Mathematik, 2007

Accelerated iterative methods for finding solutions of a system of nonlinear equations.
Appl. Math. Comput., 2007

A Hummel & Seebeck family of iterative methods with improved convergence and efficiency.
Appl. Math. Comput., 2007

A weighted variant family of Newton's method with accelerated third-order convergence.
Appl. Math. Comput., 2007

On the Use of Fuzzy Texture Spectrum for Homogeneous and Textured Images Discrimination.
Proceedings of the FUZZ-IEEE 2007, 2007

2006
An improvement to Ostrowski root-finding method.
Appl. Math. Comput., 2006

On computational efficiency for multi-precision zero-finding methods.
Appl. Math. Comput., 2006

2005
Iterative method generated by inverse interpolation with additional evaluations.
Numer. Algorithms, 2005

2004
A variant of Cauchy's method with accelerated fifth-order convergence.
Appl. Math. Lett., 2004


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