On enhanced k-fold averaged map of weak enriched F-contraction with application to boundary layer model

dc.contributor.authorJohn, Dunama
dc.contributor.authorWahab, Olalekan Taofeek
dc.contributor.authorAdeshola, Adediran Dauda
dc.date.accessioned2026-05-24T19:03:47Z
dc.date.available2026-05-24T19:03:47Z
dc.date.issued2025-09-29
dc.description.abstractRecently, two separate generalizations of enriched contraction maps, namely, weak enriched contraction and weak enriched F-contractions, were introduced to approximate fixed points using the higher order Kirk iteration. In this article, we introduce an enhanced k-fold averaged iterative procedure that can approximate fixed points of operators that may not meet the hypotheses of the previous k-fold averaged iterative scheme for each k. Our first attempt is to prove the strong convergence and stability of the enhanced k-fold averaged iteration associated with the weak enriched F-contraction in Banach spaces. Also, we justify the equivalence of the enhanced k-fold Kirk iteration with other comparable iterative schemes using the weak enriched F-contractive map. Furthermore, we show the validation and versatility of the enhanced map with some numerical examples. The results indicate that the improved k-fold averaged iteration (a) has a better convergent rate than others and (b) exhibits contracting behavior when others fail for some enriching constants. As an application, the enhanced k-fold map is employed to solve a boundary layer model.
dc.description.sponsorshipSelf-sponsored
dc.identifier.citationDunama John, Olalekan Taofeek Wahab, Adediran Dauda Adeshola, On enhanced k-fold averaged map of weak enriched F-contraction with application to boundary layer model, Adv. Fixed Point Theory, 15 (2025), Article ID 44
dc.identifier.issn1927-6303
dc.identifier.urihttps://kwasuspace.kwasu.edu.ng/handle/123456789/7306
dc.language.isoen
dc.publisherSCIK Publishing Corporation
dc.titleOn enhanced k-fold averaged map of weak enriched F-contraction with application to boundary layer model
dc.typeArticle
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