Quantum Mechanics VI: Time-dependent Schrodinger Equation 
Quantum Mechanics VI: Time-dependent Schrodinger Equation
by Yale / Ramamurti Shankar
Video Lecture 24 of 25
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Views: 2,091
Date Added: June 13, 2011

Lecture Description

The time-dependent Schrödinger Equation is introduced as a powerful analog of Newton's second law of motion that describes quantum dynamics. It is shown how given an initial wave function, one can predict the future behavior using Schrödinger's Equation. The special role of stationary states (states of definite energy) is discussed.

Course Index

Course Description

This is a continuation of Fundamentals of Physics, I (PHYS 200), the introductory course on the principles and methods of physics for students who have good preparation in physics and mathematics. This course covers electricity, magnetism, optics and quantum mechanics.

Course Structure:
75 minute lectures, twice per week

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