Hybrid multistep block method for solving neutral delay differential equations

The initial-value problem for first order single linear neutral delay differential equations (NDDEs) of constant and pantograph delay types have been solved by using hybrid multistep block method. The method has been derived by applying Taylor series interpolation polynomial and implementing the pre...

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Main Authors: Nur Inshirah Naqiah Ismail, Zanariah Abdul Majid, Norazak Senu
Format: Article
Language:English
Published: Penerbit Universiti Kebangsaan Malaysia 2020
Online Access:http://journalarticle.ukm.my/15364/1/22.pdf
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author Nur Inshirah Naqiah Ismail,
Zanariah Abdul Majid,
Norazak Senu,
author_facet Nur Inshirah Naqiah Ismail,
Zanariah Abdul Majid,
Norazak Senu,
author_sort Nur Inshirah Naqiah Ismail,
collection UKM
description The initial-value problem for first order single linear neutral delay differential equations (NDDEs) of constant and pantograph delay types have been solved by using hybrid multistep block method. The method has been derived by applying Taylor series interpolation polynomial and implementing the predictor-corrector formulas in PE(CE)m mode where m is the number of iterations for the proposed method. Both types of NDDEs will be solved at two-point simultaneously including the off-step point with constant step-size. In order to find the solution for NDDEs, the delay solutions of the unknown function will be interpolated using Lagrange interpolation polynomial and the derivative of the delay solutions will be obtained by applying divided difference formula. The order, consistency and convergence of the proposed method have been discussed in detail in the methods section. The properties of stability region for NDDEs have also been analysed. Numerical results presented have concluded that the proposed method is comparable with the existing method and is assumed to be reliable for solving first order NDDEs with constant and pantograph delay.
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spelling ukm.eprints-153642020-10-16T01:18:46Z http://journalarticle.ukm.my/15364/ Hybrid multistep block method for solving neutral delay differential equations Nur Inshirah Naqiah Ismail, Zanariah Abdul Majid, Norazak Senu, The initial-value problem for first order single linear neutral delay differential equations (NDDEs) of constant and pantograph delay types have been solved by using hybrid multistep block method. The method has been derived by applying Taylor series interpolation polynomial and implementing the predictor-corrector formulas in PE(CE)m mode where m is the number of iterations for the proposed method. Both types of NDDEs will be solved at two-point simultaneously including the off-step point with constant step-size. In order to find the solution for NDDEs, the delay solutions of the unknown function will be interpolated using Lagrange interpolation polynomial and the derivative of the delay solutions will be obtained by applying divided difference formula. The order, consistency and convergence of the proposed method have been discussed in detail in the methods section. The properties of stability region for NDDEs have also been analysed. Numerical results presented have concluded that the proposed method is comparable with the existing method and is assumed to be reliable for solving first order NDDEs with constant and pantograph delay. Penerbit Universiti Kebangsaan Malaysia 2020-04 Article PeerReviewed application/pdf en http://journalarticle.ukm.my/15364/1/22.pdf Nur Inshirah Naqiah Ismail, and Zanariah Abdul Majid, and Norazak Senu, (2020) Hybrid multistep block method for solving neutral delay differential equations. Sains Malaysiana, 49 (4). pp. 929-940. ISSN 0126-6039 http://www.ukm.my/jsm/malay_journals/jilid49bil4_2020/KandunganJilid49Bil4_2020.html
spellingShingle Nur Inshirah Naqiah Ismail,
Zanariah Abdul Majid,
Norazak Senu,
Hybrid multistep block method for solving neutral delay differential equations
title Hybrid multistep block method for solving neutral delay differential equations
title_full Hybrid multistep block method for solving neutral delay differential equations
title_fullStr Hybrid multistep block method for solving neutral delay differential equations
title_full_unstemmed Hybrid multistep block method for solving neutral delay differential equations
title_short Hybrid multistep block method for solving neutral delay differential equations
title_sort hybrid multistep block method for solving neutral delay differential equations
url http://journalarticle.ukm.my/15364/1/22.pdf
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