2 項進行中

115-1 選課時程

進行中

  • 初選第一階段 6/15 – 6/18
  • 初選第二階段 6/22 – 6/25
  • 校際選修 進行中 8/24 – 9/18
  • 初選第三階段 8/31 – 9/3
  • 開學後加退選 進行中 9/7 – 9/21
  • 逾期加退選 9/21 – 9/24
選課資源

加入行事曆

選擇訂閱 Google Calendar,或下載通用的 ICS 檔案。

使用 Google Calendar 時,Google 會收到這份課表的公開連結。

量子力學

Quantum Mechanics

學期
115-1
學分
3 學分
當期課號
535372
永久課號
EECM30116
開課單位
電信工程研究所、電機資訊國際碩士學位學程、前瞻半導體研究所、光電博士學位學程、電機資訊國際博士學位學程、智能系統研究所、半導體工程學系、電機工程學系
授課教師
渡邊浩志
校區
光復
類別
選修
上課時間表
週四
7
15:30–16:20
量子力學
ED219(光復)
3 節連堂
8
16:30–17:20
9
17:30–18:20

* 根據陽明交大上課時間表所列

概述

Quantum Mechanics (535366) and Statistical Mechanics (535368) are combined classes to teach quantum mechanics. In this class, I will teach introductory part of quantum mechanics. I will teach the other part in Statistical Mechanics (535368). As well-known, quantum physics is the basic scholar of modern science and technologies. It may be difficult for anyone to be a premier in nanotechnologies without the precise knowledge of quantum physics. However, what is "quantum" appears quite strange to beginners. This class is then an introductory quantum physics for engineering students. In particular, we will hit what/how many guys misunderstand about quantum physics. For example, to solve Schrodinger equation differs from to know quantum physics. This just corresponds to the essence of quantum physics. In quantum mechanics (535366), we will discuss mainly one quantum particle systems (ex., an electron). In Statistical Mechanics (535368), we will discuss many quantum particles system. NOTE: strongly recommend to attend the Statistical Mechanics (535368), too, to learn the other 50 %. I illustrate: 1) relationship between quantum mechanics and device engineering, 2) what the wavefunction is. 3) what to solve Schrodinger equation is.--- what the observation is. 4) several methods to solve Schrodinger equation.

先修科目

To lean Statistical Mechanics (not Statistics in Mathematics) Statistical Mechanics and Statistics are totally different. A good knowledge of the following subject is required in order to do well in the course. - introductory physics - introductory electronics - Linear Algebra - Calculus/Differential Equations

備註

無備註

教學方式

The lectures will be given in blackboard writing and power point presentation. All reports and questions should be made in English.

評分方式

學期作業: Lecture, 5 Home Works, Mid-Term Event, Final Report 考試 & 評量(比重%) : Home Work (50%) Mid-Term Event (20%) Final Report (30%)

課程大綱

教師未提供此項資料

週次計畫
週次主題
第 1 週

guidance

2026-09-10(四)
第 2 週

quantum wave-1

2026-09-17(四)
第 3 週

quantum wave-2

2026-09-24(四)
第 4 週

Analytical Mechanics

2026-10-01(四)
第 5 週

Operator-1

2026-10-08(四)
第 6 週

Operator-2

2026-10-15(四)
第 7 週

Representation

2026-10-22(四)
第 8 週

momentum

2026-10-29(四)
第 9 週

bound state-1

2026-11-05(四)
第 10 週

bound state-2 --- quantum spin

2026-11-12(四)
第 11 週

unbound state-1

2026-11-19(四)
第 12 週

unbound state-2

2026-11-26(四)
第 13 週

unbound state-3

2026-12-03(四)
第 14 週

unbound state-4

2026-12-10(四)
第 15 週

Perturbation

2026-12-17(四)
第 16 週

Invited Lecture for autumn event

2026-12-24(四)
教科書

Reference books: [1] R. Feynman, R. B. Leighton, and M. Sands, “The Feynman Lecture on Physics III”, Pearson & Addison-Wesley, 2005. [2] P. A. M. Dirac, “The principles of quantum mechanics (International Series of Monographs on Physics)”fourth edition, 1958, Oxford at the Clarendon Press. [3] A. S. Grove, “Physics and technology of semiconductor devices”, John Wiley & Sons, 1967.

Office Hours
地點
MIRC 814 電子與資訊研究中心 814
時間
By email appointment
聯絡方式
hwhpnabe@nycu.edu.tw