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A Novel Seventh-Order Implicit Block Hybrid Nyström-Type Method for Second- Order Boundary Value Problems

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  • Joel Olusegun Ajinuhi

    (Department of Mathematics, Federal University of Technology, Minna, Niger State, Nigeria)

  • Umaru Mohammed

    (Department of Mathematics, Federal University of Technology, Minna, Niger State, Nigeria)

  • Abdullah Idris Enagi

    (Department of Mathematics, Federal University of Technology, Minna, Niger State, Nigeria)

  • Jimoh Omananyi Razaq

    (Department of Mathematics, Federal University of Technology, Minna, Niger State, Nigeria)

Abstract

This paper introduces a novel approach for solving second-order nonlinear differential equations, with a primary focus on the Bratu problem, which holds significant importance in diverse scientific areas. Existing methods for solving this problem have limitations, prompting the development of the Block Hybrid Nystrom-Type Method (BHNTM). BHNTM utilizes the Bhaskara points derived, using the Bhaskara cosine approximation formula. The method seeks a numerical solution in the form of a power series polynomial, efficiently determining coefficients. The paper discusses BHNTM’s convergence, zero stability, and consistency properties, substantiated through numerical experiments, highlighting its accuracy as a solver for Bratu-type equations. This research contributes to the field of numerical analysis by offering an alternative, effective approach to tackle complex second-order nonlinear differential equations, addressing critical challenges in various scientific domains.

Suggested Citation

  • Joel Olusegun Ajinuhi & Umaru Mohammed & Abdullah Idris Enagi & Jimoh Omananyi Razaq, 2023. "A Novel Seventh-Order Implicit Block Hybrid Nyström-Type Method for Second- Order Boundary Value Problems," International Journal of Research and Scientific Innovation, International Journal of Research and Scientific Innovation (IJRSI), vol. 10(11), pages 26-44, November.
  • Handle: RePEc:bjc:journl:v:10:y:2023:i:11:p:26-44
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