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A numerical technique for solving functional integro-differential equations having variable bounds 

Gökmen, Elçin; Gürbüz, Burcu; Sezer, Mehmet (Springer Heidelberg, 2018)
In this paper, a collocation method based on Taylor polynomials is presented to solve the functional delay integro-differential equations with variable bounds. Using this method, we transform the functional equations to a ...
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A numerical approach for solving Volterra type functional integral equations with variable bounds and mixed delays 

Gökmen, Elçin; Yüksel, Gamze; Sezer, Mehmet (Elsevier Science Bv, 2017)
In this paper, the Taylor collocation method has been used the integro functional equation with variable bounds. This method is essentially based on the truncated Taylor series and its matrix representations with collocation ...
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A MODIFIED TAYLOR COLLOCATION METHOD FOR PANTOGRAPH TYPE FUNCTIONAL DIFFERENTIAL EQUATIONS WITH HYBRID PROPORTIONAL AND VARIABLE DELAYS 

Gökmen, Elçin; Sezer, Mehmet (Muğla Sıtkı Koçman Üniversitesi Fen Bilimleri Enstitüsü, 2020)
In this work, high order pantograph type linear functional differential equations with hybrid proportional and variable delays is approximately solved by the modified Taylor matrix method. With this method these functional ...
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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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Gökmen, Elçin (4)
Sezer, Mehmet (4)
Gürbüz, Burcu (1)Işık, Osman Raşit (1)Yüksel, Gamze (1)SubjectApproximate Solutions (2)Collocation Points (2)Taylor Polynomials (2)41A55 (1)41A58 (1)45J05 (1)65G99 (1)65L60 (1)Collocation Method (1)Functional differential equations (1)... View MoreDate Issued2015 (1)2017 (1)2018 (1)2020 (1)Full Text StatusWith Full Text (4)

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