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Approximate solution of general high-order linear nonhomogeneous difference equations by means of Taylor collocation method 

Gulsu, M; Sezer, M; Guney, Z (Elsevier Science Inc, 2006)
In this paper, a Taylor collocation method is developed to find an approximate solution of general high-order linear nonhomogenous difference equations with variable coefficients under the mixed conditions. The solution ...

Taylor collocation method for solution of systems of high-order linear Fredholm-Volterra integro-differential equations 

Guelsu, Mustafa; Sezer, Mehmet (Taylor & Francis Ltd, 2006)
A Taylor collocation method is presented for numerically solving the system of high-order linear Fredholm-Volterra integro-differential equations in terms of Taylor polynomials. Using the Taylor collocations points, the ...

Approximate solution to linear complex differential equation by a new approximate approach 

Gulsu, Mustafa; Sezer, Mehmet (Elsevier Science Inc, 2007)
The purpose of this study is to give a Taylor polynomial approximation for the solution of high-order linear complex differential equations with variable coefficients and mixed conditions about any point. For this purpose, ...

Taylor polynomial solutions of general linear differential-difference equations with variable coefficients 

Sezer, M; Akyuz-Dascioglu, A (Elsevier Science Inc, 2006)
In this paper, a Taylor method is developed to find an approximate solution of high-order linear differential-difference equations with variable coefficients under the mixed conditions. The solution is obtained in terms ...

A Taylor collocation method for the approximate solution of general linear Fredholm-Volterra integro-difference equations with mixed argument 

Yalcinbas, Salih; Sezer, Mehmet (Elsevier Science Inc, 2006)
In this paper, a Taylor collocation method is developed to find an approximate solution of high-order linear Fredholm-Volterra integro-difference equations with variable coefficients under the mixed conditions. The solution ...

A new polynomial approach for solving difference and Fredholm integro-difference equations with mixed argument 

Sezer, M; Gulsu, M (Elsevier Science Inc, 2005)
The purpose of this study is to give a Taylor polynomial approximation for the solution of high-order linear Fredholm difference equations with variable coefficients and mixed argument under the mixed conditions about any ...



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AuthorSezer, M (3)Sezer, Mehmet (3)Gulsu, M (2)Akyuz-Dascioglu, A (1)Guelsu, Mustafa (1)Gulsu, Mustafa (1)Guney, Z (1)Yalcinbas, Salih (1)Subject
Taylor polynomials (6)
collocation points (2)difference equations (2)polynomial approximations (2)collocation methods (1)complex differential equations (1)differential and difference equations (1)differential equations (1)Fredholm equations (1)Fredholm-Volterra difference and integro-difference equations (1)... View MoreDate Issued2006 (4)2005 (1)2007 (1)Full Text Status
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