Reformulated Adomian Decomposition Method for the Approximation of Special Linear and Nonlinear Two-Point Boundary Value Problems

dc.contributor.authorJoshua Sunday1
dc.contributor.authorJoshua A. Kwanamu
dc.contributor.authorNathaniel M. Kamoh
dc.contributor.authorYusuf Skwame
dc.date.accessioned2026-03-18T14:08:06Z
dc.date.issued2021-08-12
dc.descriptionhttp://dx.doi.org/10.5455/sf.115179
dc.description.abstractBoundary value problems (BVPs) of higher order have been found to be potentially applicable in hydro-magnetic stability, hydrodynamics, chemical reactions, heat power transmission theory, and the boundary layer theory in fluid mechanics. In this research, a method which decomposes the solution into the series which converges rapidly shall be derived. We shall call this method the reformulated Adomian decomposition method (RADM). This method is an improvement over Aadomian decomposition method (ADM). The RADM is derived in such a way that on imposing the boundary conditions on the approximant, a system of equations is obtained which in turn is solved for the undetermined constants. On substituting the resulting constants into the solution function, we obtain a series solution to the problem. The RADM is applied on some linear and nonlinear two-point BVPs and from the results obtained, the method is said to be computationally reliable.
dc.identifier.urihttps://irepos.unijos.edu.ng/handle/123456789/11527
dc.language.isoen
dc.publisherSCIENCE FORUM (JOURNAL OF PURE AND APPLIED SCIENCES)
dc.relation.ispartofseriesVolume 21; Pp 416 – 424
dc.subjectRADM
dc.titleReformulated Adomian Decomposition Method for the Approximation of Special Linear and Nonlinear Two-Point Boundary Value Problems
dc.typeArticle

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