author_facet Kumar, Amit
Kumar, Sunil
Kumar, Amit
Kumar, Sunil
author Kumar, Amit
Kumar, Sunil
spellingShingle Kumar, Amit
Kumar, Sunil
Nonlinear Engineering
Residual power series method for fractional Burger types equations
Computer Networks and Communications
General Engineering
Modeling and Simulation
General Chemical Engineering
author_sort kumar, amit
spelling Kumar, Amit Kumar, Sunil 2192-8029 2192-8010 Walter de Gruyter GmbH Computer Networks and Communications General Engineering Modeling and Simulation General Chemical Engineering http://dx.doi.org/10.1515/nleng-2016-0028 <jats:title>Abstract</jats:title><jats:p>We present an analytic algorithm to solve the generalized Berger-Fisher (B-F) equation, B-F equation, generalized Fisher equation and Fisher equation by using residual power series method (RPSM), which is based on the generalized Taylor’s series formula together with the residual error function. In all the cases obtained results are verified through the different graphical representation. Comparison of the results obtained by the present method with exact solution reveals that the accuracy and fast convergence of the proposed method.</jats:p> Residual power series method for fractional Burger types equations Nonlinear Engineering
doi_str_mv 10.1515/nleng-2016-0028
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title Residual power series method for fractional Burger types equations
title_unstemmed Residual power series method for fractional Burger types equations
title_full Residual power series method for fractional Burger types equations
title_fullStr Residual power series method for fractional Burger types equations
title_full_unstemmed Residual power series method for fractional Burger types equations
title_short Residual power series method for fractional Burger types equations
title_sort residual power series method for fractional burger types equations
topic Computer Networks and Communications
General Engineering
Modeling and Simulation
General Chemical Engineering
url http://dx.doi.org/10.1515/nleng-2016-0028
publishDate 2016
physical
description <jats:title>Abstract</jats:title><jats:p>We present an analytic algorithm to solve the generalized Berger-Fisher (B-F) equation, B-F equation, generalized Fisher equation and Fisher equation by using residual power series method (RPSM), which is based on the generalized Taylor’s series formula together with the residual error function. In all the cases obtained results are verified through the different graphical representation. Comparison of the results obtained by the present method with exact solution reveals that the accuracy and fast convergence of the proposed method.</jats:p>
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author Kumar, Amit, Kumar, Sunil
author_facet Kumar, Amit, Kumar, Sunil, Kumar, Amit, Kumar, Sunil
author_sort kumar, amit
container_issue 4
container_start_page 0
container_title Nonlinear Engineering
container_volume 5
description <jats:title>Abstract</jats:title><jats:p>We present an analytic algorithm to solve the generalized Berger-Fisher (B-F) equation, B-F equation, generalized Fisher equation and Fisher equation by using residual power series method (RPSM), which is based on the generalized Taylor’s series formula together with the residual error function. In all the cases obtained results are verified through the different graphical representation. Comparison of the results obtained by the present method with exact solution reveals that the accuracy and fast convergence of the proposed method.</jats:p>
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spelling Kumar, Amit Kumar, Sunil 2192-8029 2192-8010 Walter de Gruyter GmbH Computer Networks and Communications General Engineering Modeling and Simulation General Chemical Engineering http://dx.doi.org/10.1515/nleng-2016-0028 <jats:title>Abstract</jats:title><jats:p>We present an analytic algorithm to solve the generalized Berger-Fisher (B-F) equation, B-F equation, generalized Fisher equation and Fisher equation by using residual power series method (RPSM), which is based on the generalized Taylor’s series formula together with the residual error function. In all the cases obtained results are verified through the different graphical representation. Comparison of the results obtained by the present method with exact solution reveals that the accuracy and fast convergence of the proposed method.</jats:p> Residual power series method for fractional Burger types equations Nonlinear Engineering
spellingShingle Kumar, Amit, Kumar, Sunil, Nonlinear Engineering, Residual power series method for fractional Burger types equations, Computer Networks and Communications, General Engineering, Modeling and Simulation, General Chemical Engineering
title Residual power series method for fractional Burger types equations
title_full Residual power series method for fractional Burger types equations
title_fullStr Residual power series method for fractional Burger types equations
title_full_unstemmed Residual power series method for fractional Burger types equations
title_short Residual power series method for fractional Burger types equations
title_sort residual power series method for fractional burger types equations
title_unstemmed Residual power series method for fractional Burger types equations
topic Computer Networks and Communications, General Engineering, Modeling and Simulation, General Chemical Engineering
url http://dx.doi.org/10.1515/nleng-2016-0028