WOS: 000452903800004A simple procedure has been found for the general solution of the time-independent Schrodinger equation (SE) with the help of quantization of potential area in one dimension without making any approximation. Energy values are not dependent on wave functions. So, to find the energy values, it is enough to find the classic turning points of the potential function. Two different solutions were obtained, namely, symmetric and antisymmetric in bound states. These normalized wave functions are always periodic. It is enough to take the integral of the square root of the potential energy function to find the normalized wave functions. If these calculations cannot be made analytically, they should then be performed by numerical m...
An exact quantization rule for the Schrödinger equation is presented. In the exact quantization rule...
2 figuresWe propose a new method to obtain approximate solutions for the Schr\"{o}dinger equation wi...
A general solution of the Schrödinger equation in the potential representation has been obtained in ...
A simple procedure has been found for the general solution of the time-independent Schrödinger equat...
Using a recently developed new analytic approach to solution of the 1D Schrödinger equation [Eleuch ...
An exact quantization rule for the bound states of the one-dimensional Schr\"{o}dinger equation is p...
We will try to numerically solve the unidimensional time-independent Schrödinger equation for consta...
Method of potential representation for solution of SchrДodinger equation was proposed in [1], [2] fo...
The Schrodinger equation for stationary states is studied in a central potential V(r) proportional ...
The Schrodinger equation for stationary states is studied in a central potential V(r) proportional ...
A new method is proposed for the quantum-mechanical determination of the eigenstates and eigenvalues...
Quantum Mechanics deals with the atomic world using mathematical theories to explain what classical ...
The Schrodinger equation is solved exactly for some well known potentials. Solutions are obtained re...
We present details of a new solution method for the bound energy states of a quantum particle in a o...
The classical laws ofmotion and Newtonian thought met considerable opposition in the late 1800s and ...
An exact quantization rule for the Schrödinger equation is presented. In the exact quantization rule...
2 figuresWe propose a new method to obtain approximate solutions for the Schr\"{o}dinger equation wi...
A general solution of the Schrödinger equation in the potential representation has been obtained in ...
A simple procedure has been found for the general solution of the time-independent Schrödinger equat...
Using a recently developed new analytic approach to solution of the 1D Schrödinger equation [Eleuch ...
An exact quantization rule for the bound states of the one-dimensional Schr\"{o}dinger equation is p...
We will try to numerically solve the unidimensional time-independent Schrödinger equation for consta...
Method of potential representation for solution of SchrДodinger equation was proposed in [1], [2] fo...
The Schrodinger equation for stationary states is studied in a central potential V(r) proportional ...
The Schrodinger equation for stationary states is studied in a central potential V(r) proportional ...
A new method is proposed for the quantum-mechanical determination of the eigenstates and eigenvalues...
Quantum Mechanics deals with the atomic world using mathematical theories to explain what classical ...
The Schrodinger equation is solved exactly for some well known potentials. Solutions are obtained re...
We present details of a new solution method for the bound energy states of a quantum particle in a o...
The classical laws ofmotion and Newtonian thought met considerable opposition in the late 1800s and ...
An exact quantization rule for the Schrödinger equation is presented. In the exact quantization rule...
2 figuresWe propose a new method to obtain approximate solutions for the Schr\"{o}dinger equation wi...
A general solution of the Schrödinger equation in the potential representation has been obtained in ...