校際選修

115-1 選課時程

進行中

  • 初選第一階段 6/15/2026
  • 初選第二階段 6/22/2026
  • 校際選修 8/24/2026
  • 初選第三階段 8/31/2026
  • 開學後加退選 9/7/2026
  • 逾期加退選 9/21/2026
選課資源

電磁學(一)(英文班)

Electromagnetics (I)

學期
106-2
學分
3 學分
當期課號
1163
永久課號
UEE2202
開課單位
電機共同課程
授課教師
黃謀勤
校區
光復
類別
必修
上課時間表
週一
週四
2
09:00–09:50
電磁學(一)(英文班)
ED219
5
13:20–14:10
電磁學(一)(英文班)
ED219
2 節連堂
6
14:20–15:10

* 根據陽明交大上課時間表所列

概述

Electromagnetic theory is the study of electric and magnetic fields and signals in space and time. It is fundamental to the applications of wireless communications, microwave engineering, opto-electronics, high speed circuit design, etc.. In the first semester of electromagnetic theory, static electrostatic and magnetic fields in space are discussed. The concept of "fields" (spatial distribution of physical quantities) and important mathematic tools are emphasized. Part I Introduction and vector analysis (~ 4 weeks, Ch. 1, 2) Part II Electrostatics (~ 7 weeks, Ch. 3, 4, 5) Part III Magnetostatics (~ 5 weeks, Ch. 6) The syllabus of this "Electromagnetics I" course comprises vector analysis, electrostatics, steady electric currents, and magnetostatics. Within vector analysis, the three main coordinate systems (Cartesian, cylindrical, and spherical) along with their differential and integral calculus are introduced. Important vector operations such as the divergence, curl and gradient are also introduced, for all three coordinate systems. Theorems such as the divergence and Stoke's theorem, as well as useful vector identities, are also taught. Under the large umbrella of electrostatics, Coulomb's law, Gauss' law, definition of the electric field, scalar electric potential, boundary conditions on the electric field at media interfaces, dielectric permittivity, polarization, electric dipole moment, capacitance/capacitors, electrostatic energy and forces, Poisson's and Laplace equations, and boundary value problems are all covered. In the branch of steady electric currents, topics covered comprise Ohm's law, electromotive force, Kirchoff's voltage and current laws, continuity equation, power dissipation and Joule's law, and boundary conditions for the electric current density. Within the large chapter of magnetostatics, topics taught include Ampere’s law, definition of the magnetic flux density, vector magnetic potential, Biot-Savart law, magnetic dipole, scalar magnetic potential, magnetization and its equivalent electric current as well as charge densities, magnetic field intensity, permeability, magnetomotive force, magnetic circuits and reluctances, boundary condition for magnetostatic fields, inductances (self and mutual) and inductors, as well as magnetic energy, forces, and torque. The goal of this introductory course is to provide students an elemental level of understanding of the subject of electromagnetism.

先修科目

High school physics and mathematics, differential and integral calculus, basic circuit theory.

教學方式

Mix of powerpoint slides and blackboard writing

評分方式

作業部份: One or two homework assignments will be given before each exam but will not be graded. Solutions will not be posted on the web page. 考試部份: mid terms x 2; final x 1 評量部份: homework 0%, mid-term exam (x2) 66.66%, final exam 33.33%

教科書

Textbook: D.K. Cheng, "Field and Wave Electromagnetics," 2nd Ed., 1989

Office Hours
地點
ED-927
時間
Daily, 10:00 to 18:00
聯絡方式
Email: malcolm.ng@ieee.org