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。

近代物理導論

Introduction to Modern Physics

學期
106-1
學分
0 學分
當期課號
1028
永久課號
DEE2311
開課單位
電子工程學系
授課教師
簡昭欣
校區
光復
類別
選修
上課時間表
週四
週五
2
09:00–09:50
近代物理導論
ED303(光復)
5
13:20–14:10
近代物理導論
ED303(光復)
2 節連堂
6
14:20–15:10

* 根據陽明交大上課時間表所列

概述

本課程將講述相對論 光電效應 原子結構 粒子與波的雙重性等等近代物理發展的主要內容;希望透過此課程建立量子力學 固態物理及元件物理的基礎知識與觀念

先修科目

普通物理 微積分

備註

無備註

教學方式

參考書目:Concepts of Modern Physics; Beiser;McGraw Hill出版

評分方式

作業及出席20%;期中考40%;期末考40%

課程大綱
  • Relativity I

    1.1 Special Relativity 1.2The principle of Relativity 1.3The Michelson-Morley Experiment 1.4 Postulate of Special Relativity

    講授:
    3
  • Relativity I

    1.5 Consequences of Special Relativity 1.6 The Lorentz Transformation 1.7 Spacetime and Causality

    講授:
    3
  • Relativity II

    2.1 Relativistic Momentum 2.2 Relativistic Energy 2.3 Mass as a Measure of Energy

    講授:
    3
  • Relativity II

    2.4 Conservation of Relativistic Momentum and Energy 2.5 GeneralRelativity 2.6 Supplemental

    講授:
    3
  • Quantum Theory of Light

    3.1 Hertz's Experiments 3.2 Black Body Rediation 3.3 Rayleigh-Jeans Law and Planks Law

    講授:
    3
  • Quantum Theory of Light

    3.4 Light Quantization and Photoelectric Effect 3.5 Compton Effect and X-rays 3.6 Particle-Wave Duality

    講授:
    3
  • Particle Nature of Matter

    4.1 Atomic Nature of Matter 4.2 Composition of Atoms

    講授:
    3
  • Particle Nature of Matter

    4.3 Bohr Model 4.4 Bohr's Correspondence Principle 4.5 Direct Confirmation of Atomic Energy Level

    講授:
    3
  • Matter Wave

    5.1 Pilot Wave of De Broglie 5.2 Davisson-Gerner Experiment 5.3 Wave Group and Dispersion 5.4 Fourier Integral

    講授:
    3
  • Matter Wave

    5.5 Heisenberg Uncertainty Principle 5.6 Electron Wave 5.7 Wave-Particle Duality 5.8 Final Note

    講授:
    3
  • Quantum Mechanics in One Dimension

    6.1Born Interpretation 6.2Wave function for a free particle 6.3Wave Function in the presence of force 6.4 Particle in Box

    講授:
    3
  • Quantum Mechanics in One Dimension

    6.5 Finite Sqare Well 6.6 Quantum Oscillator 6.7 Expectation Value 6.8 Observables and Operators

    講授:
    3
  • Tunneling Phenomena

    7.1Square Barrier 7.2Barrier Penetration

    講授:
    3
  • Quantum Mechanics in Three Dimensions

    8.1 Particle in a 3-D Box 8.2 Central force and Angular Momentum

    講授:
    3
  • Quantum Mechanics in Three Dimensions

    8.3 Space Quantization 8.4Quantization of Angular Momentum and Energy 8.5Atomic Hydrogen

    講授:
    3
  • Atomic Structure

    9.1 Orbital Magnetism and Zeeman Effect 9.2 Spinning Electron 9.3 Spin-Orbital Interaction

    講授:
    3
  • Atomic Structure

    9.4 Exchange Symmetry and Exclusion Principle 9.5Perodic Table

    講授:
    3
  • Relativity II

    2.1 Relativistic Momentum 2.2 Relativistic Energy 2.3 Mass as a Measure of Energy

    講授:
    ˇ
週次計畫
週次主題
第 1 週

Relativity I-- 1.1 Special Relativity 1.2The principle of Relativity 1.3The Michelson-Morley Experiment 1.4 Postulate of Special Relativity

9/16 9/18
第 2 週

1.5 Consequences of Special Relativity 1.6 The Lorentz Transformation 1.7 Spacetime and Causality

9/23 9/25
第 3 週

Relativity II 2.1 Relativistic Momentum 2.2 Relativistic Energy 2.3 Mass as a Measure of Energy

9/30 10/2
第 4 週

2.4 Conservation of Relativistic Momentum and Energy 2.5 GeneralRelativity 2.6 Supplemental

10/7 10/9
第 5 週

Quantum Theory of Light 3.1 Hertz's Experiments 3.2 Black Body Rediation 3.3 Rayleigh-Jeans Law and Planks Law

10/14 10/16
第 6 週

3.4 Light Quantization and Photoelectric Effect 3.5 Compton Effect and X-rays 3.6 Particle-Wave Duality

10/21 10/23
第 7 週

Particle Nature of Matter 4.1 Atomic Nature of Matter 4.2 Composition of Atoms

10/28 10/30
第 8 週

4.3 Bohr Model 4.4 Bohr's Correspondence Principle 4.5 Direct Confirmation of Atomic Energy Level

11/4 11/6
第 9 週

Matter Wave 5.1 Pilot Wave of De Broglie 5.2 Davisson-Gerner Experiment 5.3 Wave Group and Dispersion 5.4 Fourier Integral

11/11 11/13
第 10 週

5.5 Heisenberg Uncertainty Principle 5.6 Electron Wave 5.7 Wave-Particle Duality 5.8 Final Note

11/18 11/20
第 11 週

Quantum Mechanics in One Dimension 6.1Born Interpretation 6.2Wave function for a free particle 6.3Wave Function in the presence of force 6.4 Particle in Box

11/25 11/27
第 12 週

6.5 Finite Sqare Well 6.6 Quantum Oscillator 6.7 Expectation Value 6.8 Observables and Operators

12/2 12/4
第 13 週

Tunneling Phenomena 7.1Square Barrier 7.2Barrier Penetration

12/9 12/11
第 14 週

Quantum Mechanics in Three Dimensions 8.1 Particle in a 3-D Box 8.2 Central force and Angular Momentum

12/16 12/18
第 15 週

8.3 Space Quantization 8.4Quantization of Angular Momentum and Energy 8.5Atomic Hydrogen

12/23 12/25
第 16 週

Atomic Structure 9.1 Orbital Magnetism and Zeeman Effect 9.2 Spinning Electron 9.3 Spin-Orbital Interaction

12/30 1/6
第 17 週

9.4 Exchange Symmetry and Exclusion Principle 9.5Perodic Table

1/8
教科書

Modern Physics; Serway/Moses/Moyer;3rd edition; Brooks/Cole出版

Office Hours
地點
工四館623室
時間
星期三下午
聯絡方式
chchien@faculty.nctu.edu.tw