A faster iterative method for solving nonlinear third-order BVPs based on Green's function

被引:5
|
作者
Okeke, Godwin Amechi [1 ]
Ofem, Austine Efut [2 ]
Isik, Huseyin [3 ]
机构
[1] Fed Univ Technol Owerri, Sch Phys Sci, Dept Math, PMB 1526, Owerri, Imo State, Nigeria
[2] Univ Uyo, Dept Math, Uyo, Nigeria
[3] Bandirma Onyedi Eylul Univ, Dept Engn Sci, TR-10200 Bandirma, Balikesir, Turkey
关键词
Fixed point; Nonlinear third-order BVPs; Generalized alpha-nonexpansive mappings; Delay nonlinear Volterra integrodifferential equation; BOUNDARY-VALUE-PROBLEMS; ALPHA-NONEXPANSIVE MAPPINGS; APPROXIMATING FIXED-POINTS; NUMERICAL-SOLUTION; DIFFERENTIAL EQUATIONS; CONVERGENCE;
D O I
10.1186/s13661-022-01686-y
中图分类号
O29 [应用数学];
学科分类号
070104 ;
摘要
In this article, we propose an iterative method, called the GA iterative method, to approximate the fixed points of generalized alpha-nonexpansive mappings in uniformly convex Banach spaces. Further, we obtain some convergence results of the new iterative method. Also, we provide a nontrivial example of a generalized alpha-nonexpansive mapping and with the example, we carry out a numeral experiment to show that our new iterative algorithm is more efficient than some existing iterative methods. Again, we present an interesting strategy based on the GA iterative method to solve nonlinear third-order boundary value problems (BVPs). For this, we derive a sequence named the GA-Green iterative method and show that the sequence converges strongly to the fixed point of an integral operator. Finally, the approximation of the solution for a nonlinear integrodifferential equation via our new iterative method is considered. We present some illustrative examples to validate our main results in the application sections of this article. Our results are a generalization and an extension of several prominent results of many well-known authors in the literature.
引用
收藏
页数:26
相关论文
共 50 条
  • [41] Solving Nonlinear System of Third-Order Boundary Value Problems Using Block Method
    See, Phang Pei
    Majid, Zanariah Abdul
    Suleiman, Mohamed
    Ismail, Fudziah Bt
    Othman, Khairil Iskandar
    INTERNATIONAL CONFERENCE ON MATHEMATICS, ENGINEERING AND INDUSTRIAL APPLICATIONS 2014 (ICOMEIA 2014), 2015, 1660
  • [42] A unified Krylov-Bogoliubov-Mitropolskii method for solving third-order nonlinear systems
    Alam, MS
    Sattar, MA
    INDIAN JOURNAL OF PURE & APPLIED MATHEMATICS, 1997, 28 (02): : 151 - 167
  • [43] An Efficient Higher-Order Quasilinearization Method for Solving Nonlinear BVPs
    Alaidarous, Eman S.
    Ullah, Malik Zaka
    Ahmad, Fayyaz
    Al-Fhaid, A. S.
    JOURNAL OF APPLIED MATHEMATICS, 2013,
  • [44] A rapidly convergent method for solving third-order polynomials
    Molina, Ramon A. Fernandez
    Sigalotti, Leonardo Di G.
    Rendon, Otto
    Mejias, Antonio J.
    AIP ADVANCES, 2022, 12 (04)
  • [45] A family of third-order multipoint methods for solving nonlinear equations
    Kanwar, V.
    APPLIED MATHEMATICS AND COMPUTATION, 2006, 176 (02) : 409 - 413
  • [46] Solving the Nonlinear System of Third-Order Boundary Value Problems
    Akgul, Ali
    Akgul, Esra Karatas
    Khan, Yasir
    Baleanu, Dumitru
    MATHEMATICAL METHODS IN ENGINEERING: APPLICATIONS IN DYNAMICS OF COMPLEX SYSTEMS, 2019, 24 : 103 - 119
  • [47] Numerical integration of third-order BVPs using a fourth-order hybrid block method
    Rufai, Mufutau Ajani
    JOURNAL OF COMPUTATIONAL SCIENCE, 2024, 81
  • [48] A novel approach for the solution of BVPs via Green’s function and fixed point iterative method
    Faeem Ali
    Javid Ali
    Izhar Uddin
    Journal of Applied Mathematics and Computing, 2021, 66 : 167 - 181
  • [49] A Subdivision Based Iterative Collocation Algorithm for Nonlinear Third-Order Boundary Value Problems
    Ejaz, Syeda Tehmina
    Mustafa, Ghulam
    ADVANCES IN MATHEMATICAL PHYSICS, 2016, 2016
  • [50] A modified parametric iteration method for solving nonlinear second order BVPs
    Ghorbani, Asghar
    Gachpazan, Morteza
    Saberi-Nadjafi, Jafar
    COMPUTATIONAL & APPLIED MATHEMATICS, 2011, 30 (03): : 499 - 515