Showing 121 - 140 of 2,152

121

Numerical integration error method for zeros of analytic functions
Toshio Suzuki ; Tomohiro Suzuki
Journal of Computational and Applied Mathematics. 152:493-505

convergence Applied Mathematics Zero of functions Exponential type 01 natural sciences numerical example
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122

An error analysis of two related quadrature methods for computing zeros of analytic functions: An error analysis of two related quadrature methods for computing zeros of analytic functions.
Peter Kravanja ; Marc Van Barel ; Hiroshi Sugiura ; et al.
Journal of Computational and Applied Mathematics. 152:467-480

Computational Mathematic... Applied Mathematics Numerical computation of... 0101 mathematics Numerical quadrature and... Zeros of analytic functi...
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123

Dilation method for finding close roots of polynomials based on constrained learning neural networks
Horace H. S. Ip ; De-Shuang Huang ; Zheru Chi ; et al.
Physics Letters A. 309:443-451

position transform 0209 industrial biotechn... complex learning algorit... feedforward neural netwo... Learning and adaptive sy... 0202 electrical engineer...
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124

Laguerre-like inclusion method for polynomial zeros
Miodrag S. Petković
Journal of Computational and Applied Mathematics. 152:451-465

numerical examples convergence Laguerre-like inclusion... Applied Mathematics Interval and finite arit... error bounds
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125

A new iteration method for solving algebraic equations
Ji-Huan He
Applied Mathematics and Computation. 135:81-84

0209 industrial biotechn... Newton's method convergence Taylor's theorem 0103 physical sciences Numerical computation of...
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126

On zeros of polynomial and vector solutions of associated polynomial system from Vieta theorem: On zeros of polynomial and vector solutions of associated polynomial system from Viëta theorem
Xinyuan Wu
Applied Numerical Mathematics. 44:415-423

Viëta theorem numerical examples Broyden's method iterative approximation 01 natural sciences Real polynomials: locati...
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127

Computing the Zeros and Turning Points of Solutions of Second Order Homogeneous Linear ODEs: Computing the zeros and turning points of solutions of second order homogeneous linear ODEs
Javier Segura ; Amparo Gil
SIAM Journal on Numerical Analysis. 41:827-855

zeros and turning points special functions numerical examples second-order ODEs fixed point iterations fixed point methods
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128

On the guaranteed convergence of the Japanese zero-finding method
Miodrag S. Petković ; Lidija Rancic ; Dušan M. Milošević
Publications de l'Institut Mathematique. 73:59-72

convergence fourth order method simple zeros of a polyno... nonlinear equations Computational aspects of... Numerical computation of...
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129

A statistical analysis of the numerical condition of multiple roots of polynomials: A statistical analysis of the numerical condition of multiple roots of polynomials.
Joab R. Winkler
Computers & Mathematics with Applications. 45:9-24

numerical examples Polynomial roots Average case componentwi... polynomial roots 01 natural sciences Average case normwise nu...
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130

Normal factorisation of polynomials and computational issues: Normal factorisation of polynomials and computational issues.
Karcanias, N. ; Mitrouli, M.
Computers & Mathematics with Applications. 45:229-245

numerical examples Computational Mathematic... algorithm Computational Theory and... Modelling and Simulation Factorisation
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131

The Quadratic Numerical Range and the Location of Zeros of Polynomials: The quadratic numerical range and the location of zeros of polynomials
Hansjörg Linden
SIAM Journal on Matrix Analysis and Applications. 25:266-284

zeros of polynomials companion matrix Zeros of polynomials, ra... Norms of matrices, numer... Computational aspects of... Numerical computation of...
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132

On the R-Order of Convergence of a Family of Methods for Simultaneous Extraction of Part of All Roots of Algebraic Polynomials: On the R-order of convergence of a family of methods for simultaneous extraction of part of all roots of algebraic polynomials
N. Kyurkchiev ; Anton Iliev
BIT Numerical Mathematics. 42:879-885

spectral radius total-step method roots of algebraic polyn... Zeros of polynomials, ra... Computational aspects of... Weierstrass-Durand-Kerne...
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133

Ancient chinese algorithm: The Ying Buzu Shu (method of surplus and deficiency) vs Newton iteration method: Ancient Chinese algorithm: The ying buzu shu (method of surplus and deficiency) vs Newton iteration method
He Ji-huan
Applied Mathematics and Mechanics. 23:1407-1412

History of Chinese mathe... Chinese double-false pos... 0103 physical sciences Numerical computation of... nonlinear oscillators 01 natural sciences
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134

Graphic and numerical comparison between iterative methods
Varona, J.L.
RIUR. Repositorio Institucional de la Universidad de La Rioja
Universidad de La Rioja (UR)
RIUR: Repositorio Institucional de la Universidad de La Rioja
Dialnet CRIS Repositorio institucional de la Universidad de La Rioja
instname

General theory of numeri... Newton's method Numerical aspects of com... Zeros of polynomials, ra... Computer graphics computational geometry (...
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135

Parallel real-time computation: sometimes quantity means quality
Selim G. Akl
COMPUTING AND INFORMATICS; Vol 21, No 5 (2002): Computing and Informatics; 455–487

parallelism cryptography Parallel numerical compu... definite integrals 0102 computer and inform... 02 engineering and techn...
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136

The modified decomposition method for solving nonlinear algebraic equations
Salah M. El-Sayed
Applied Mathematics and Computation. 132:589-597

numerical examples 0209 industrial biotechn... convergence nonlinear algebraic equa... Numerical computation of... 02 engineering and techn...
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137

Solution of nonlinear equations by modified adomian decomposition method: Solution of nonlinear equations by modified Adomian decomposition method
Jafar Biazar ; Esmail Babolian
Applied Mathematics and Computation. 132:167-172

numerical examples 0209 industrial biotechn... Adomian method Numerical computation of... 02 engineering and techn... 0101 mathematics
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138

Newton's diagram method for nonlinear equations with several small parameters
Peter Aizengendler
The ANZIAM Journal. 44:247-259

0209 industrial biotechn... small solutions bifurcation problems Numerical computation of... 02 engineering and techn... 0101 mathematics
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139

An improved computation of component centers in the degree-n bifurcation set: An improved computation of component centers in the degree-\(n\) bifurcation set
Young Hee Geum ; Young Ik Kim
Journal of Applied Mathematics and Computing. 10:63-73

Bifurcations of singular... component center Newton's method degree-n bifurcation set Numerical bifurcation pr... bifurcation
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140

Simultaneous Point Estimates for Newton's Method: Simultaneous point estimates for Newton's method
Prashant Batra
BIT Numerical Mathematics. 42:467-476

practical conditions for... Newton's method simultaneous methods Zeros of polynomials, ra... Newton iteration Computational aspects of...
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