<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>Quantum Mechanics | Hugo Academic CV Theme</title><link>https://qudx54632.github.io/qudx.github.io/tags/quantum-mechanics/</link><atom:link href="https://qudx54632.github.io/qudx.github.io/tags/quantum-mechanics/index.xml" rel="self" type="application/rss+xml"/><description>Quantum Mechanics</description><generator>Hugo Blox Builder (https://hugoblox.com)</generator><language>en-us</language><lastBuildDate>Sun, 30 Aug 2026 00:00:00 +0000</lastBuildDate><image><url>https://qudx54632.github.io/qudx.github.io/media/icon_hu7729264130191091259.png</url><title>Quantum Mechanics</title><link>https://qudx54632.github.io/qudx.github.io/tags/quantum-mechanics/</link></image><item><title>Quantum Mechanics</title><link>https://qudx54632.github.io/qudx.github.io/teaching/qm/</link><pubDate>Sun, 30 Aug 2026 00:00:00 +0000</pubDate><guid>https://qudx54632.github.io/qudx.github.io/teaching/qm/</guid><description>&lt;p>This page contains materials for the undergraduate course &lt;strong>Quantum Mechanics&lt;/strong>, taught in the &lt;strong>Fall semester of 2026&lt;/strong>.&lt;/p>
&lt;hr>
&lt;h2 id="-contact-information">📧 Contact Information&lt;/h2>
&lt;ul>
&lt;li>Instructor: &lt;a href="mailto:dqu@cdut.edu.cn">dqu@cdut.edu.cn&lt;/a>&lt;/li>
&lt;li>Teaching Assistant: Min Sun (孙敏)&lt;/li>
&lt;li>Teaching Assistant Email: &lt;a href="mailto:3257887316@qq.com">3257887316@qq.com&lt;/a>&lt;/li>
&lt;li>Office Hours: Wednesdays, 16:00&amp;ndash;17:00&lt;/li>
&lt;li>Location: 北翼楼，5教8楼 5824（芙蓉餐厅对面）&lt;/li>
&lt;/ul>
&lt;hr>
&lt;h2 id="-course-schedule">📅 Course Schedule&lt;/h2>
&lt;p>Below is the official course schedule for &lt;strong>Fall 2026&lt;/strong>.&lt;/p>
&lt;div style="text-align:center;">
&lt;a href="./qm_schedule_2026.png" target="_blank" style="position:relative; z-index:10; display:inline-block;">
&lt;img src="./qm_schedule_2026.png" style="max-width:100%; cursor: zoom-in;">
&lt;/a>
&lt;/div>
&lt;hr>
&lt;h2 id="-course-materials">📚 Course Materials&lt;/h2>
&lt;ul>
&lt;li>🗂️&lt;a href="Syllabus.pdf">Syllabus (PDF)&lt;/a>&lt;/li>
&lt;li>📄&lt;a href="lecture-notes/">Lecture Notes&lt;/a>&lt;/li>
&lt;li>📄&lt;a href="assignments/">Assignments&lt;/a>&lt;/li>
&lt;li>📄&lt;a href="assignment-solutions/">Assignment Solutions&lt;/a>&lt;/li>
&lt;/ul>
&lt;hr>
&lt;h2 id="-topics-covered">🧮 Topics Covered&lt;/h2>
&lt;ul>
&lt;li>Mathematical foundations of quantum mechanics&lt;/li>
&lt;li>Wave functions and the Schrodinger equation&lt;/li>
&lt;li>Operators, eigenvalues, and expectation values&lt;/li>
&lt;li>One-dimensional quantum systems&lt;/li>
&lt;li>Angular momentum and spin&lt;/li>
&lt;li>Central potentials and the hydrogen atom&lt;/li>
&lt;li>Time-independent perturbation theory&lt;/li>
&lt;li>Variational and semiclassical methods&lt;/li>
&lt;li>Identical particles&lt;/li>
&lt;/ul>
&lt;hr>
&lt;h2 id="-learning-objectives">🎯 Learning Objectives&lt;/h2>
&lt;p>By the end of the course, students will be able to:&lt;/p>
&lt;ul>
&lt;li>Understand the postulates and mathematical framework of quantum mechanics&lt;/li>
&lt;li>Solve the Schrodinger equation for standard quantum systems&lt;/li>
&lt;li>Work with operators, commutators, and quantum measurements&lt;/li>
&lt;li>Analyze angular momentum and spin&lt;/li>
&lt;li>Apply approximation methods to systems without exact solutions&lt;/li>
&lt;/ul>
&lt;hr>
&lt;h2 id="-external-resources">🔗 External Resources&lt;/h2>
&lt;ul>
&lt;li>
&lt;p>&lt;a href="https://www.feynmanlectures.caltech.edu/III_toc.html" target="_blank" rel="noopener">Feynman &amp;amp; Leighton &amp;amp; Sands - &lt;em>The Feynman Lectures on Physics, Volume III: Quantum mechanics&lt;/em>&lt;/a>&lt;/p>
&lt;/li>
&lt;li>
&lt;p>&lt;a href="https://www.cambridge.org/highereducation/books/introduction-to-quantum-mechanics/990799CA07A83FC5312402AF6860311E" target="_blank" rel="noopener">Griffiths &amp;amp; Schroeter - &lt;em>Introduction to Quantum Mechanics&lt;/em>&lt;/a>&lt;/p>
&lt;/li>
&lt;li>
&lt;p>&lt;a href="https://link.springer.com/book/10.1007/978-1-4757-0576-8" target="_blank" rel="noopener">Shankar - &lt;em>Principles of Quantum Mechanics&lt;/em>&lt;/a>&lt;/p>
&lt;/li>
&lt;li>
&lt;p>&lt;a href="https://ocw.mit.edu/search/" target="_blank" rel="noopener">MIT OpenCourseWare - Quantum Mechanics&lt;/a>&lt;/p>
&lt;/li>
&lt;/ul>
&lt;hr>
&lt;p>Please check back regularly for updates to lecture notes, assignments, and announcements.&lt;/p></description></item></channel></rss>