Article citationsMore >>

K.Barley, J. Vega-Guzman, Discovery of the relativistic Schrödinger equation, IOP Science, 2022.

has been cited by the following article:

Article

The Function Number Method: Basis and Applications

1Department of Physics, Mathematics and Engineering, Marien Ngouabi University, Republic of Congo


American Journal of Applied Mathematics and Statistics. 2023, Vol. 11 No. 2, 50-60
DOI: 10.12691/ajams-11-2-2
Copyright © 2023 Science and Education Publishing

Cite this paper:
Marcel Julmard Ongoumaka Yandza. The Function Number Method: Basis and Applications. American Journal of Applied Mathematics and Statistics. 2023; 11(2):50-60. doi: 10.12691/ajams-11-2-2.

Correspondence to: Marcel  Julmard Ongoumaka Yandza, Department of Physics, Mathematics and Engineering, Marien Ngouabi University, Republic of Congo. Email: julmard.marjus@gmail.com

Abstract

In this paper, we present a new method to solve some mathematics problems such as integral calculus, derivative calculus and differential equations. The method consists to transform an analytic problem or function to a real number. This real number obtained represents the Function Number. After finding the Function Number solution, it is also possible to transform it to a semi-analytic function which represents the definitive solution of the problem. We qualify the solution as semi-analytic solution because to solve the problem, we make some approximations. So, the semi-analytic function obtained is an approximate analytic solution. This method is simple and concise. It gives strong approximate solutions near to the real solutions.

Keywords