Electromagnetic Wave Engineering

Course Information

College Toyama College Year 2022
Course Title Electromagnetic Wave Engineering
Course Code 0123 Course Category Specialized / Elective
Class Format Lecture Credits School Credit: 1
Department Department of Electronics and Computer Engineering Student Grade 5th
Term First Semester Classes per Week 2
Textbook and/or Teaching Materials
Instructor Shina Toru

Course Objectives

At the completion of this course, students will be able to

(1) Calculate the inductance and magnetic energy
(2) Expalin the basic terms of electromagnetic plane waves and polarization
(3) Explain the Maxwell equations

Rubric

Ideal Level of Achievement (Very Good)Standard Level of Achievement (Good)Unacceptable Level of Achievement (Fail)
Evaluation 1Can calculate the inductance and magnetic energy almost perfectly.Can calculate the inductance and magnetic energy correctly.Can't calculate the inductance and magnetic energy.
Evaluation 2Can explain the basic terms of electromagnetic plane waves and polarization alomost perfectly.Can explain the basic terms of electromagnetic plane waves and polarization correctly.Can't explain the basic terms of electromagnetic plane waves and polarization.
Evaluation 3Can explain the Maxwell equations almost perfectly.Can explain the Maxwell equations correctly.Can't explain the Maxwell equations.

Assigned Department Objectives

MCCコア科目   See Hide
JABEE B2 See Hide
ディプロマポリシー 1 See Hide

Teaching Method

Outline:
In this course, you will learn about the principles, properties and fundamental physics of electromagnetic waves.
Style:
For the purpose of understanding the Electromagnetic waves, lectures and exercises faciliate the learning of principles and examples.
Notice:
The recognition of credit requires 60 points or more rating.
Based on the knowledge of basic electromagnetics and wave.

Characteristics of Class / Division in Learning

Active Learning
Aided by ICT
Applicable to Remote Class
Instructor Professionally Experienced

Course Plan

Theme Goals
1st Semester
1st Quarter
1st Guidance
Inductance
To explain inductance
2nd Calculation of inductance To calculation of inductance
3rd Magnetic energy To explain magnetic energy
4th Displacement current and Maxwell's law To explain displacement current and Maxwell's law
5th Maxwell's law To explain Maxwell's law
6th Differential Maxwell equation To explain differential Maxwell equation
7th Integral Maxwell equation To explain integral Maxwell equation
8th Boundary conditions To explain boundary conditions
2nd Quarter
9th Generation of electromagnetic waves To explain generation of electromagnetic waves
10th Wave equations To explain wave equations
11th Wave functions To explain wave functions
12th Plane electromagnetic waves
Reflection and refraction
To explain plane electromagnetic wave, reflection and refraction
13th Polarization
Energy of the electromagnetic waves
To explain polarization
and energy of the electromagnetic waves
14th Comprehensive exercise Comprehensive exercise
15th Final exam Final exam
16th Return and explanation of answer sheets, evaluation and confirmation of results Summarize the study content and confirm grades.

Evaluation Method and Weight (%)

ExaminationPresentationMutual Evaluations between studentsBehaviorPortfolioOtherTotal
Subtotal60000040100
Basic Ability0000000
Technical Ability60000040100
Interdisciplinary Ability0000000