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所在平台: Coursera |
课程主页: https://www.coursera.org/learn/quantum-mechanics
课程评论:没有评论
课程名称:量子力学 课程概述:本课程是统计热力学的第二门课程,专为具有机械或航空航天工程背景的学员设计,介绍量子力学的基本概念。课程采用公理化的方法,推导薛定谔波动方程,并通过简单的解来说明原子和分子的结构行为。此外,还探讨了更现实的行为,并介绍现代量子化学的数值解法用于求解波动方程。 课程大纲: 1. **量子力学简介** - 第一模块介绍量子力学的基本概念,适合机械或航空航天工程背景的学员。通过公理化方法推导薛定谔波动方程,并显示时间依赖性可以分离,从而得出定态波动方程。 2. **波动方程的简单解** - 第二模块中,我们求解多个简单系统的定态波动方程,包括盒中的粒子、刚性转子、谐振子和氢原子。这些简单解为后续讨论真实的原子和分子行为奠定基础。 3. **真实的原子和分子行为** - 第三模块探讨原子和分子的更现实行为。同时介绍求解波动方程的数值方法,帮助学员理解更复杂的量子力学现象。
Name:Introduction to quantum mechanics
Description:Module 1presents an introduction to quantum mechanics at a level appropriate for those with mechanical or aerospace engineering backgrounds. Using a postulatory approach that describes the steps to follow, the Schrodinger wave equation is derived and it is showen that the time dependence can be separated and a stationary wave equation results.
Name:Simple Solutions of the Wave Equation
Description:In module 2 we solve the stationary wave equation for several simple systems. These include the particle in a box, the rigid rotator, the harmonic oscillator, and the hydrogenic atom. These simple solutions form the basisi for discussing real atomic and molecular behavior in the next module.
Name:Real Atomic and Molecular Behavior
Description:In Module 3 we explore the more realistic behavior of atoms and molecules. We also introduce and discuss numerical methods for solving the wave equation.
Course 2 of Statistical Thermodynamics presents an introduction to quantum mechanics at a level appropriate for those with mechanical or aerospace engineering backgrounds. Using a postulatory approach that describes the steps to follow, the Schrodinger wave equation is derived and simple solutions obtained that illustrate atomic and molecular structural behavior. More realistic behavior is also explored along with modern quantum chemistry numerical solution methods for solving the wave equation.