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A Collocation Method to Solve Higher Order Linear Complex Differential Equations in Rectangular Domains 

Sezer, Mehmet; Yalcinbas, Salih (Wiley, 2010)
In this article, a collocation method is developed to find an approximate solution of higher order linear complex differential equations with variable coefficients in rectangular domains. This method is essentially based ...

A New Taylor Collocation Method for Nonlinear Fredholm-Volterra Integro-Differential Equations 

Bulbul, Berna; Gulsu, Mustafa; Sezer, Mehmet (Wiley, 2010)
The aim of this article is to present an efficient numerical procedure for solving nonlinear integro-differential equations. Our method depends mainly on a Taylor expansion approach. This method transforms the integro-differential ...

Solution of High-Order Linear Fredholm Integro-Differential Equations with Piecewise Intervals 

Baykus, Nurcan; Sezer, Mehmet (Wiley, 2011)
In this study, a practical matrix method is presented to find an approximate solution for high-order linear Fredholm integro-differential equations with piecewise intervals under the initial boundary conditions in terms ...

Numerical Solution of a Class of Complex Differential Equations by the Taylor Collocation Method in Elliptic Domains 

Sezer, Mehmet; Tanay, Bekir; Gulsu, Mustafa (Wiley, 2010)
An approximate method for solving higher-order linear complex differential equations in elliptic domains is proposed. The approach is based on a Taylor collocation method, which consists of the matrix represantation of ...
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Polynomial solution of high-order linear Fredholm integro-differential equations with constant coefficients 

Kurt, Nurcan; Sezer, Mehmet (Pergamon-Elsevier Science Ltd, 2008)
In this study, a practical matrix method is presented to find an approximate solution of high-order linear Fredholm integro-differential equations with constant coefficients under the initial-boundary conditions in terms ...
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Taylor collocation approach for delayed Lotka-Volterra predator-prey system 

Gökmen, Elçin; Işık, Osman Raşit; Sezer, Mehmet (Elsevier Science Inc, 2015)
In this study, a numerical approach is proposed to obtain approximate solutions of the system of nonlinear delay differential equations defining Lotka-Volterra prey predator model. By using the Taylor polynomials and ...



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Sezer, Mehmet (6)
Gulsu, Mustafa (2)Baykus, Nurcan (1)Bulbul, Berna (1)Gökmen, Elçin (1)Işık, Osman Raşit (1)Kurt, Nurcan (1)Tanay, Bekir (1)Yalcinbas, Salih (1)Subject
Taylor Polynomials and Series (6)
Collocation Method (2)Collocation Points (2)Complex Differential Equations (2)Fredholm Integral and Integro-Differential Equations (2)Taylor Matrix Method (2)Approximate Solution (1)Lotka-Volterra Prey-Predator Model (1)Nonlinear Integro-Differential Equations (1)System of Nonlinear Delay-Differential Equations (1)... View MoreDate Issued2010 (3)2008 (1)2011 (1)2015 (1)Full Text StatusWithout Full Text (4)With Full Text (2)

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