物理(二)
Physics (II)
學期
110-2
學分
0
學分
當期課號
0517
永久課號
DEP1112
開課單位
物理教學小組
授課教師
劉宗哲
校區
光復
類別
必修
上課時間表
| 節 | 週一 | 週四 |
|---|---|---|
3 10:10–11:00 | 物理(二) SC105(光復) 2 節連堂 | |
4 11:10–12:00 | ||
7 15:30–16:20 | 物理(二) SC105(光復) 2 節連堂 | |
8 16:30–17:20 |
* 根據陽明交大上課時間表所列
概述
Provide students with knowledge of fundamental physics and prepare them with physics problem-solving skills.
先修科目
Physics (I) and elementary calculus
備註
無備註
教學方式
Blackboard presentation
評分方式
Physics Recitation (20%), Homework (10%), Midterm I (20%), Midterm II (20%), and Final (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 | 22 Electric Fields 22.1 Properties of Electric Charges 22.2 Charging Objects by Induction 22.3 Coulomb’s Law 22.4 Analysis Model: Particle in a Field (Electric) 22.5 Electric Field Lines 22.6 Motion of a Charged Particle in a Uniform Electric Field |
| 第 1 週 | 23 Continuous Charge Distributions and Gauss’s Law 23.1 Electric Field of a Continuous Charge Distribution 23.2 Electric Flux 23.3 Gauss's Law 23.4 Application of Gauss's Law to Various Charge Distributions |
| 第 2 週 | 24.1 Electric Potential and Potential Difference 24.2 Potential Difference in a Uniform Electric Field 24.3 Electric Potential and Potential Energy Due to Point Charges 24.4 Obtaining the Value of the Electric Field from the Electric Potential 24.5 Electric Potential Due to Continuous Charge Distributions 24.6 Conductors in Electrostatic Equilibrium |
| 第 2 週 | 25.1 Definition of Capacitance 664 25.2 Calculating Capacitance 665 25.3 Combinations of Capacitors 668 25.4 Energy Stored in a Charged Capacitor 672 25.5 Capacitors with Dielectrics 676 25.6 Electric Dipole in an Electric Field 678 25.7 An Atomic Description of Dielectrics 68 |
| 第 3 週 | 26.1 Electric Current 692 26.2 Resistance 694 26.3 A Model for Electrical Conduction 699 26.4 Resistance and Temperature 701 26.5 Superconductors 702 26.6 Electrical Power 703 |
| 第 4 週 | 27.1 Electromotive Force 714 27.2 Resistors in Series and Parallel 716 27.3 Kirchhoff’s Rules 723 27.4 RC Circuits 726 27.5 Household Wiring and Electrical Safety 732 |
| 第 5 週 | 28.1 Analysis Model: Particle in a Field (Magnetic) 743 28.2 Motion of a Charged Particle in a Uniform Magnetic Field 748 28.3 Applications Involving Charged Particles Moving in a Magnetic Field 752 28.4 Magnetic Force Acting on a CurrentCarrying Conductor 755 28.5 Torque on a Current Loop in a Uniform Magnetic Field 757 28.6 The Hall Effect 761 |
| 第 6 週 | 29.1 The Biot–Savart Law 772 29.2 The Magnetic Force Between Two Parallel Conductors 777 29.3 Ampère’s Law 779 29.4 The Magnetic Field of a Solenoid 782 29.5 Gauss’s Law in Magnetism 784 29.6 Magnetism in Matter 786 |
| 第 7 週 | 30.1 Faraday’s Law of Induction 798 30.2 Motional emf 801 30.3 Lenz’s Law 805 30.4 The General Form of Faraday’s Law 808 30.5 Generators and Motors 810 30.6 Eddy Currents 814 |
| 第 8 週 | 31.1 Self-Induction and Inductance 825 31.2 RL Circuits 827 31.3 Energy in a Magnetic Field 830 31.4 Mutual Inductance 832 31.5 Oscillations in an LC Circuit 834 31.6 The RLC Circuit 837 |
| 第 9 週 | 32.1 AC Sources 848 32.2 Resistors in an AC Circuit 848 32.3 Inductors in an AC Circuit 851 32.4 Capacitors in an AC Circuit 854 32.5 The RLC Series Circuit 856 32.6 Power in an AC Circuit 859 32.7 Resonance in a Series RLC Circuit 861 32.8 The Transformer and Power Transmission 863 |
| 第 10 週 | 33.1 Displacement Current and the General Form of Ampère’s Law 874 33.2 Maxwell’s Equations and Hertz's Discoveries 876 33.3 Plane Electromagnetic Waves 878 33.4 Energy Carried by Electromagnetic Waves 882 33.5 Momentum and Radiation Pressure 884 33.6 Production of Electromagnetic Waves by an Antenna 886 33.7 The Spectrum of Electromagnetic Waves 887 |
| 第 11 週 | 33.1 Displacement Current and the General Form of Ampère’s Law 874 33.2 Maxwell’s Equations and Hertz’s Discoveries 876 33.3 Plane Electromagnetic Waves 878 33.4 Energy Carried by Electromagnetic Waves 882 33.5 Momentum and Radiation Pressure 884 33.6 Production of Electromagnetic Waves by an Antenna 886 33.7 The Spectrum of Electromagnetic Waves 887 |
| 第 12 週 | 34.1 The Nature of Light 899 34.2 The Ray Approximation in Ray Optics 901 34.3 Analysis Model: Wave Under Reflection 902 34.4 Analysis Model: Wave Under Refraction 905 34.5 Huygens’s Principle 911 34.6 Dispersion 912 34.7 Total Internal Reflection 914 |
| 第 13 週 | 35.1 Images Formed by Flat Mirrors 926 35.2 Images Formed by Spherical Mirrors 928 35.3 Images Formed by Refraction 935 35.4 Images Formed by Thin Lenses 939 35.5 Lens Aberrations 947 35.6 Optical Instruments 947 |
| 第 14 週 | 36.1 Young’s Double-Slit Experiment 963 36.2 Analysis Model: Waves in Interference 965 36.3 Intensity Distribution of the Double-Slit Interference Pattern 968 36.4 Change of Phase Due to Reflection 969 36.5 Interference in Thin Films 970 36.6 The Michelson Interferometer 973 |
| 第 15 週 | 37.1 Introduction to Diffraction Patterns 984 37.2 Diffraction Patterns from Narrow Slits 985 37.3 Resolution of Single-Slit and Circular Apertures 988 37.4 The Diffraction Grating 992 37.5 Diffraction of X-Rays by Crystals 996 37.6 Polarization of Light Waves 998 |
| 第 16 週 | 38.1 The Principle of Galilean Relativity 1013 38.2 The Michelson–Morley Experiment 1016 38.3 Einstein’s Principle of Relativity 1018 38.4 Consequences of the Special Theory of Relativity 1019 38.5 The Lorentz Transformation Equations 1030 38.6 The Lorentz Velocity Transformation Equations 1031 38.7 Relativistic Linear Momentum 1034 38.8 Relativistic Energy 1035 38.9 The General Theory of Relativity 1039 |
教科書
Physics for Scientists and Engineers with Modern Physics (10th edition) by R. A. Serway and J. W. Jewett, Jr. or any textbook of general physics
Office Hours
- 地點
- TBD
- 時間
- TBD
- 聯絡方式
- 03-5731638
