YoVDO

Solving Schrödinger's Equation as an Eigenvalue Problem with Numpy

Offered By: Dot Physics via YouTube

Tags

NumPy Courses Quantum Mechanics Courses Python Courses Linear Algebra Courses Numerical Methods Courses Computational Physics Courses Schrodinger Equation Courses Finite Difference Method Courses

Course Description

Overview

Save Big on Coursera Plus. 7,000+ courses at $160 off. Limited Time Only!
Explore the finite difference method for solving the 1D infinite square well using Python's NumPy library in this 27-minute video tutorial. Learn how to approach Schrödinger's Equation as an eigenvalue problem and implement the solution numerically. Compare this method with other approaches, including a finite difference method using lists, an analytical solution, and a numerical solution using the shooting method. Gain practical insights into quantum mechanics problem-solving techniques and enhance your computational physics skills.

Syllabus

Solving Schrödinger's Equation as an Eigenvalue Problem with Numpy


Taught by

Dot Physics

Related Courses

The Finite Element Method for Problems in Physics
University of Michigan via Coursera
Computational Physics
Indian Institute of Science Education and Research, Pune via Swayam
Manipulate Coulomb's Law Concepts using Wolfram notebook
Coursera Project Network via Coursera
Lagrangian Coherent Structures in Unsteady Fluids with Finite Time Lyapunov Exponents
Steve Brunton via YouTube
Changing Physics Education with Julia
The Julia Programming Language via YouTube