Comparison of the finite difference boundary value method and the cooley-cashion-zare method for solving one-dimensional eigenvalue equations
Author:
Publisher
Elsevier BV
Subject
Computer Science Applications,Physics and Astronomy (miscellaneous),Applied Mathematics,Computational Mathematics,Modelling and Simulation,Numerical Analysis
Reference22 articles.
1. Finite difference boundary value method for solving one-dimensional eigenvalue equations
2. Testing of Diatomic Potential‐Energy Functions by Numerical Methods
3. Calculation of Intensity Distribution in the Vibrational Structure of Electronic Transitions: The B 3Π0+u—X 1Σ0+g Resonance Series of Molecular Iodine
4. Dissociation Energy and Vibrational Terms of Ground‐State (X 1Σg+) Hydrogen
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1. Nonlinear fourier analysis for the infinite-interval Korteweg-de Vries equation I: An algorithm for the direct scattering transform;Journal of Computational Physics;1991-06
2. On the numerical integration of the Schrödinger equation in the finite-difference schemes;Journal of Computational Physics;1982-03
3. On the resonance spectrum of the one-dimensional schrödinger equation;Chemical Physics Letters;1981-12
4. Extrapolation of finite difference approximations for bound state equations;Journal of Computational Physics;1975-10
5. Time-delay matrix for resonance tunnelling reactions;Molecular Physics;1974-10
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