タイトル

開講年度 開講学部等
2026 工学部
開講学期 曜日時限 授業形態 AL(アクティブ・ラーニング)ポイント
後期 金5~6 講義 1.0
時間割番号 科目名[英文名] 使用言語 単位数
1061320040 分析化学[Analytical Chemistry] 日本語 2
担当教員(責任)[ローマ字表記] メディア授業
藤井 健太[FUJII Kenta]
担当教員[ローマ字表記]
藤井 健太 [FUJII Kenta]
特定科目区分   対象学生   対象年次 2~
ディプロマ・ポリシーに関わる項目 カリキュラムマップ(授業科目とDPとの対応関係はこちらから閲覧できます)
授業の目的と概要
Analytical chemistry explains, on the basis of equilibrium theory, how to treat various phenomena in solution that begin with the process of dissolution, as a foundation for the qualitative and quantitative analysis of substances. Through this approach, students will learn to understand and quantitatively handle various equilibrium reactions in solution—such as acid–base reactions, complex formation reactions, redox reactions, and dissolution–precipitation reactions—and to apply this knowledge to analytical techniques and data analysis. In addition, from the perspective of measurement, the course will provide explanations centered on the proper use of experimental apparatus.
授業の到達目標
・Visualize how substances dissolve in a solvent and in what form they exist in solution.
・Understand and explain chemical equilibrium (law of mass action, mass balance, and charge balance).
・Define acids and bases from several perspectives and calculate concentrations and pH based on acid–base equilibria.
・Understand complex formation, redox reactions, and dissolution equilibria, and derive concentrations in solution.
・Describe the behavior of chemical equilibrium from both kinetic and thermodynamic viewpoints.
授業計画
【全体】
Lectures will be given on the topics listed below. At the beginning of each class, approximately 20 minutes will be devoted to explanations of exercise problems. In addition, the final 20–30 minutes of each class will be used for review or practice problems related to that day's lecture.
Announcements regarding the course and submission of assignments will be handled through the learning support system.
項目 内容 授業時間外学習 備考
第1回 Concentrations in solutions Definitions of concentration and concentration calculations Assignments and homework instructed during class; overall review (recommended study time: at least 2 hours).
第2回 Dissolution of solids and properties of solutions (1) Dissolution of substances, the unique properties of water, electrolytes, and activity Assignments and homework instructed during class; overall review (recommended study time: at least 2 hours).
第3回 Dissolution of solids and properties of solutions (2) Dissolution mechanisms of substances and hydration (solvation) phenomena; their thermodynamic description Assignments and homework instructed during class; overall review (recommended study time: at least 2 hours).
第4回 Acids and bases (1) Arrhenius and Brønsted–Lowry definitions of acids and bases, and their strengths Assignments and homework instructed during class; overall review (recommended study time: at least 2 hours).
第5回 Acid–base equilibrium Quantitative treatment of chemical equilibria in solution for strong acids, strong bases, weak acids, and weak bases Assignments and homework instructed during class; overall review (recommended study time: at least 2 hours).
第6回 Equilibria of polyprotic acids and bases Quantitative treatment of stepwise dissociation of acids and bases Assignments and homework instructed during class; overall review (recommended study time: at least 2 hours).
第7回 Applications of acid–base equilibrium Graphical representation of acid–base equilibria (species distribution curves) Assignments and homework instructed during class; overall review (recommended study time: at least 2 hours).
第8回 Interim summary Exercises covering the content of Weeks 1–7. Assignments and homework instructed during class; overall review (recommended study time: at least 2 hours).
第9回 Thermodynamic treatment of chemical equilibrium Relationship between chemical equilibrium and Gibbs free energy Assignments and homework instructed during class; overall review (recommended study time: at least 2 hours).
第10回 Precipitation equilibrium (1) Solubility of solutes, the solubility product, and dissolution equilibrium; effects of the common-ion effect, salt effects, and hydrogen-ion concentration on dissolution. Assignments and homework instructed during class; overall review (recommended study time: at least 2 hours).
第11回 Precipitation equilibrium (2) Systems in which precipitation equilibrium competes with other equilibria (such as acid dissociation equilibria). Assignments and homework instructed during class; overall review (recommended study time: at least 2 hours).
第12回 Complex formation equilibrium (1) Complex formation reactions of metal ions and stability constants Assignments and homework instructed during class; overall review (recommended study time: at least 2 hours).
第13回 Complex formation equilibrium (2) Systems in which complex formation equilibria compete with other equilibria (such as acid dissociation and precipitation equilibria). Assignments and homework instructed during class; overall review (recommended study time: at least 2 hours).
第14回 Extraction equilibrium Equilibrium treatment of solvent extraction systems using biphasic systems composed of immiscible water and oil (organic solvent). Assignments and homework instructed during class; overall review (recommended study time: at least 2 hours).
第15回 Final examination An examination will be conducted on the content covered in Lectures 1–14. Review comprehensively using your lecture notes, textbook, and exercise problems covered so far.
※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: 10% D: --%
成績評価法
In principle, evaluation will be based on the final examination.
Final examination: 95%; in-class assignments, reports, and others: 5%.
教科書にかかわる情報
教科書 書名 分析化学の基礎 ISBN 9784320042957
著者名 佐竹正忠 他 出版社 共立出版 出版年 1994
備考
Students are required to purchase the textbook.
参考書にかかわる情報
備考
Please also make use of the library and other available resources.
メッセージ
キーワード
Chemical equilibria in solutions: acid–base equilibrium, dissolution equilibrium, complex formation equilibrium, and extraction equilibrium
持続可能な開発目標(SDGs)

  • エネルギーをみんなに そしてクリーンに
  • 住み続けられるまちづくりを
(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。
(持続可能な都市)包摂的で安全かつ強靱(レジリエント)で持続可能な都市及び人間居住を実現する。
関連科目
Physical Chemistry I, Physical Chemistry II, Inorganic Chemistry, Coordination Chemistry
履修条件
連絡先
E-mail:k-fujii@yamaguchi-u.ac.jp
オフィスアワー
Every Friday, 14:30–16:00

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