GREEN ENGINEERING LAB. 3*

理工学部 - 機能創造理工学科

SEA5160E

コース情報

担当教員: 坂本 織江

単位数: 1

年度: 2024

学期: 秋学期

曜限: 木3, 木4

形式: 対面授業+オンライン授業(オンデマンド授業,同時双方向型授業(Zoomなど)) /Alternating face-to-face & A

レベル: 300

アクティブラーニング: あり

他学部履修: 不可

評価方法

その他

Attendance, attitude for lab classes including guidance and experiments, and contents of reports will be comprehensively considered in evaluation. Each report must be submitted by the deadline. If a student fails to submit the report by the due date, its score will be deduced or fully lost depending on the reason and may result in not being able to get the credit of the course.

100%

詳細情報

概要

Electrical and Electronics Engineering (EEE) is one of the main topics in the field of Green Engineering. In this course, students carry out experiments for five topics which are selected as fundamental and important subjects in EEE. Titles of topics are listed in Schedule below. One experiment group will consist of about four students. Students are highly encouraged to conduct each experiment and examine obtained data by themselves based on the advice and safety instruction given by the instructors and teaching assistants. It is indispensable to prepare for each experiment topic by reading instructions and relevant parts in textbooks in advance. Student has to write a report for each topic after the experiment. All of attendance, attitude in classes, and contents of reports are considered in evaluation. Among Curriculum Policy in Green Engineering, this course provides opportunities to acquire interdisciplinary abilities (CP4) through laboratory classes on fundamental experiments for electrical and electronics engineering. This course is offered jointly with “電気電子工学実験Ⅰ” in Japanese-taught program in Department of Engineering and Applied Sciences. Moodle is used to distribute class materials and receive reports. Students have to register to the course before the first week and check the page before each week. Be sure that student itself has to register to the moodle course; there is no automatic registration service such as based on status of each student's course registration on Loyola. Information of Moodle will be given through Loyola class bulletin. Information of Guidance will be posted on Loyola class bulletin before the first week. Student should check and attend the guidance according to it. From second week, follow instructions on how to attend classes given by the instructor of each experiment topic.

目標

Students should acquire the fundamental knowledge of EEE through the following activities; - a deep understanding on fundamental theories in EEE with correlation between experiments and what learned in relevant lecture courses, - ability to accomplish experiments in cooperation with other students as a team, - way of experimentation, especially handling of measurement equipment, - how to process data obtained through experiments, - how to write scientific reports. Among Diploma Policy in Green Engineering Program, the objective of this course is to foster the abilities to address science and technology issues (DP2) and to contribute to the acquisition of new physical values and the creation of functions (DP3) by studying electrical and electronics engineering.

授業外の学習

[Preparation] (approx. 1 hour per week) - download the document of instruction for each subject and read it carefully, read relevant parts of a textbook if any, prepare required devices such as PC, calculator etc., if any. [Review] (approx. 3 hours per week) - process and review the measured data. (1 hour) - examine and consider the obtained results well, write a report for the topic, and submit it before its deadline. (2 hours)

所要時間: 4 hours per week

スケジュール

  1. *Note: The order of classes will be different between experiment groups. There is a possibility that the way of offering each class may be changed depending on situations. 1. Guidance, grouping and safety instructions
  2. Guidance for report preparation (Basics)
  3. Preliminary Lecture
  4. Circuit Theorems (Basics)
  5. Circuit Theorems (Practices)
  6. Introduction to Microcontroller Programming (Basics)
  7. Introduction to Microcontroller Programming (Applications)
  8. Electrostatic Fields (Basics)
  9. Electrostatic Fields (Applications)
  10. Characteristics of Magnetic Materials (Basics)
  11. Characteristics of Magnetic Materials (Applications)
  12. AC Circuits and Transient Phenomena (Basics)
  13. AC Circuits and Transient Phenomena (Practices)
  14. Comprehensive assignments relevant to the course

教科書

Materials for the subject written by the professors will be provided on Moodle.

    参考書

    書籍情報はありません。

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