An Efficient Replacement for Schrödinger's Partial Differential Equation

Author:

Abbas Ismail

Abstract

The classical finite difference method for solving time-dependent partial differential equations has become quite tedious and requires the use of off-the-shelf algorithms such as those in MATLAB. The treatment by finite difference method then solution of the n resulting first order algebraic equations is quite difficult since the underlying matrix is singular. We propose an alternative revolutionary statistical technique using Bmatrix chains, which are a product of the Cairo techniques. This technique is valid for both classical macroscopic physics such as the heat diffusion equation and modern microscopic quantum mechanics such as Schrödinger's PDE. He completely neglects partial differential equations as if they never existed. The numerical results of the proposed numerical statistical method show stability, accuracy and superiority over conventional PDE methods.

Publisher

International Journal of Innovative Science and Research Technology

Reference19 articles.

1. Abbas, I.M. Abbas, A Numerical Statistical Solution to the Laplace and Poisson Partial Differential Equations, I.M. Abbas, IJISRT review, Volume 5,Issue11, November – 2020.

2. I.M. Abbas, IJISRT, Time Dependent Numerical Statistical Solution of the Partial Differential Heat Diffusion Equation, Volume 6, Issue 1,January – 2021

3. Abbas, A statistical numerical solution for the time- independent Schrödinger equation, Researchgate, IJISRT review, November 2023.

4. I. Abbas How Nature Works in Four-Dimensional Space: The Untold Complex Story, Researchgate, IJISRT review, May 2023

5. John H. Mathews, Numerical methods for Mathematics, Science and Engineering,1994, pp. 346- 399.

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