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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。
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Steel is widely used in many types of buildings because of its high strength. Many high-rise and long-span buildings are steel-framed. This introductory course provides fundamental knowledge of steel structures and the basics of structural design.
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This course aims to help students achieve the following learning outcomes: 1. Understand the material properties of steel. 2. Understand the key design criteria used in steel structural design. 3. Understand the behavior of steel members under tension, compression, and bending, and design the required section properties. 4. Understand the mechanics of connections between steel members and design appropriate connection details. 5. Understand the fundamentals of seismic design for steel structures.
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The course covers the fundamental behavior of steel (elasticity, plasticity, buckling, etc.), the stresses acting on members and connections and their design methods, and an overview of seismic design. Through worked examples, students will practice designing steel members (beams, columns, braces) and connections, as well as applying basic seismic design procedures. A short report assignment or quiz will be given in each class.
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第1回
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Steel Properties I (Ch. 1: Overview of Steel Structures–Ch. 2: Steel Materials)
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Learn about steel structural systems, steel production, material properties, and types of steel.
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第2回
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Tension Members I (Ch. 3: Steel Structural Design; Ch. 4: Tension Member Mechanics)
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Learn design criteria such as allowable stresses, material constants, and cross-section design for tension members.
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第3回
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Compression Members I (5.1: Overview of Compression Members; 5.2: Single Compression Members)
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Learn elastic and inelastic buckling, and design methods for single compression members.
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第4回
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Compression Members II (5.3: Built-up Compression Members; 5.4: Local Buckling)
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Learn effective slenderness ratio, lacing members, buckling of plate elements, and width-to-thickness ratios.
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第5回
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Compression Members III,Flexural Members I (6.1: Flexural Members; 6.2: Flexural Behavior; 6.3: Lateral Buckling)
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Learn the stresses in members under bending and the fundamentals of lateral buckling.
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第6回
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Flexural Members II (6.3: Lateral Buckling; 6.4: Member Checks)
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Learn about lateral-torsional buckling (continued) and the design of flexural members.
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第7回
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Flexural Members III Midterm Exam
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Learn flexural member design; Midterm exam.
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第8回
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Connections I (Ch. 7: Connection Design and Behavior)
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Learn about bolted connections and high-strength bolted connections.
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第9回
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Connections II (Ch. 7: Connection Design and Behavior)
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Learn about welded connections.
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第10回
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Connections III (Ch. 7: Connection Design and Behavior)
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Learn connection design methods.
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第11回
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Connections IV (Ch. 7: Connection Design and Behavior)
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Learn connection design methods.
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第12回
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Connections V (Ch. 7: Connection Design and Behavior)
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Practice exercises on connection design.
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第13回
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Seismic Design Overview I (Ch. 8: Seismic Design Overview)
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Learn the workflow of seismic design, including what is done in primary and secondary design.
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第14回
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Seismic Design Overview II (Ch. 8: Seismic Design Overview)
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Learn the workflow of seismic design, including what is done in primary and secondary design.
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第15回
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Final Exam
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Covers all topics in the course.
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第16回
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Course Wrap-Up / Summary
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Course wrap-up for the full scope of the content.
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※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】
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A: --% B: 10% C: 10% D: --%
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Assessment will be based on short reports, the midterm exam, and the final exam. Short reports: 30% Midterm exam: 30% Final exam: 40%
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| (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。 |
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