|
|
|
|
メディア授業とは,メディアを利用して遠隔方式により実施する授業の授業時数が,総授業時数の半数を超える授業をいいます。 メディア授業により取得した単位は,卒業要件として修得すべき単位のうち60単位を超えないものとされています。
|
|
|
|
In this course, students will work on problem-solving exercises individually or in small groups. The aim is to deepen the knowledge acquired in compulsory specialized subjects of the Applied Chemistry department. Furthermore, the course seeks to develop the ability to practically apply this learning towards graduation research and solving societal issues.
|
|
|
|
|
|
|
Students are expected to fully understand the content of concurrently offered required specialized courses (Analytical Chemistry, Inorganic Chemistry, Quantum Chemistry, Organic Chemistry, Polymer Chemistry, Chemical Kinetics, Biochemistry, and Chemical Engineering) and apply the acquired knowledge effectively.
|
|
|
|
This exercise is conducted in coordination with the compulsory subjects being taught concurrently. Therefore, exercises related to the lecture content (such as solving exercise problems) and oral exams will be conducted. It also serves as a supplementary lecture for parts that could not be sufficiently explained during the lecture.
Detailed lesson plans will be explained during the first session of the exercise. Note that the order and number of exercises may change depending on the progress of the compulsory subjects.
|
|
|
|
第1回
|
Exercises in Analytical Chemistry
|
Exercises related to the content of Analytical Chemistry.
|
第2回
|
Exercises in Analytical Chemistry
|
Exercises related to the content of Analytical Chemistry.
|
第3回
|
Exercises in Analytical Chemistry
|
Exercises related to the content of Analytical Chemistry.
|
第4回
|
Exercises in Analytical Chemistry
|
Exercises related to the content of Analytical Chemistry.
|
第5回
|
Exercises in Inorganic Chemistry
|
Exercises related to the content of Inorganic Chemistry II.
|
第6回
|
Exercises in Inorganic Chemistry
|
Exercises related to the content of Inorganic Chemistry II.
|
第7回
|
Exercises in Inorganic Chemistry
|
Exercises related to the content of Inorganic Chemistry II.
|
第8回
|
Exercises in Inorganic Chemistry
|
Exercises related to the content of Inorganic Chemistry II.
|
第9回
|
Exercises in Quantum Chemistry
|
Exercises related to the content of Quantum Chemistry.
|
第10回
|
Exercises in Quantum Chemistry
|
Exercises related to the content of Quantum Chemistry.
|
第11回
|
Exercises in Quantum Chemistry
|
Exercises related to the content of Quantum Chemistry.
|
第12回
|
Exercises in Quantum Chemistry
|
Exercises related to the content of Quantum Chemistry.
|
第13回
|
Exercises in Organic Chemistry
|
Exercises related to the content of Organic Chemistry II.
|
第14回
|
Exercises in Organic Chemistry
|
Exercises related to the content of Organic Chemistry II.
|
第15回
|
Exercises in Organic Chemistry
|
Exercises related to the content of Organic Chemistry II.
|
第16回
|
Exercises in Organic Chemistry
|
Exercises related to the content of Organic Chemistry II.
|
第17回
|
Exercises in Polymer Chemistry
|
Exercises related to the content of Polymer Chemistry I.
|
第18回
|
Exercises in Polymer Chemistry
|
Exercises related to the content of Polymer Chemistry I.
|
第19回
|
Exercises in Polymer Chemistry
|
Exercises related to the content of Polymer Chemistry I.
|
第20回
|
Exercises in Polymer Chemistry
|
Exercises related to the content of Polymer Chemistry I.
|
第21回
|
Exercises in Chemical Engineering
|
Exercises related to the content of Chemical Engineering II.
|
第22回
|
Exercises in Chemical Engineering
|
Exercises related to the content of Chemical Engineering II.
|
第23回
|
Exercises in Chemical Engineering
|
Exercises related to the content of Chemical Engineering II.
|
第24回
|
Exercises in Chemical Engineering
|
Exercises related to the content of Chemical Engineering II.
|
第25回
|
Exercises in Chemical Kinetics
|
Exercises related to the content of Chemical Kinetics.
|
第26回
|
Exercises in Chemical Kinetics
|
Exercises related to the content of Chemical Kinetics.
|
第27回
|
Exercises in Chemical Kinetics
|
Exercises related to the content of Chemical Kinetics.
|
第28回
|
Exercises in Biological Chemistry
|
Exercises related to the content of Biological Chemistry II.
|
第29回
|
Exercises in Biological Chemistry
|
Exercises related to the content of Biological Chemistry II.
|
第30回
|
Exercises in Biological Chemistry
|
Exercises related to the content of Biological Chemistry II.
|
|
※AL(アクティブ・ラーニング)欄に関する注 ・授業全体で、AL(アクティブ・ラーニング)が占める時間の割合を、それぞれの項目ごとに示しています。 ・A〜Dのアルファベットは、以下の学修形態を指しています。 【A:グループワーク】、【B:ディスカッション・ディベート】、【C:フィールドワーク(実験・実習、演習を含む)】、【D:プレゼンテーション】
|
|
|
|
A: --% B: --% C: 100% D: --%
|
|
Class exercises, including reports, constitute 100% of the grade. Multiple absences may result in disqualification.
|
|
|
|
|
|
備考
Utilize the textbooks specified in the corresponding required courses.
|
|
|
|
|
備考
Utilize the reference books specified in the corresponding required courses.
|
|
|
|
Do not be absent from any classes. Additionally, since this course is coordinated with the required subjects, ensure you do not miss any lectures of the corresponding required courses.
|
|
|
|
Exercises, foundational skill development
|
|
|
|
(エネルギー)すべての人々の、安価かつ信頼できる持続可能な近代的エネルギーへのアクセスを確保する。 |
(インフラ、産業化、イノベーション)強靱(レジリエント)なインフラ構築、包摂的かつ持続可能な産業化の促進及びイノベーションの推進を図る。 |
(持続可能な生産と消費)持続可能な生産消費形態を確保する。 |
(気候変動)気候変動及びその影響を軽減するための緊急対策を講じる。 |
(海洋資源)持続可能な開発のために海洋・海洋資源を保全し、持続可能な形で利用する。 |
(陸上資源)陸域生態系の保護、回復、持続可能な利用の推進、持続可能な森林の経営、砂漠化への対処、ならびに土地の劣化の阻止・回復及び生物多様性の損失を阻止する。 |
|
|
Analytical Chemistry, Inorganic Chemistry II, Quantum Chemistry, Organic Chemistry II, Polymer Chemistry, Chemical Engineering II, Chemical Kinetics, Biological Chemistry II
|
|
|
|
|
■For exercises in Organic Chemistry II, Chemical Engineering II, Polymer Chemistry I, Inorganic Chemistry II, Biochemistry II, Reaction Kinetics, Quantum Chemistry, and Analytical Chemistry: Teachers for each subject
■For the overall program Noriko Yoshimoto Room: Sogokenkyutou7F 713 noriko-y@yamaguchi-u.ac.jp
|
|
|
|
Refer to the office hours set for each subject, including Organic Chemistry II, Chemical Engineering II, Polymer Chemistry I, Inorganic Chemistry II, Bilojical Chemistry II, Reaction Kinetics, Quantum Chemistry, and Analytical Chemistry.
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|