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MIM 225 - Resistance

Faculty of Engineering and Natural Sciences · Architecture · Undergraduate

ECTS: 3 T+P+L: 2+0+0 Compulsory
Coordinator: Doç. Dr. Yurdakul AYGÖRMEZ
Instructors: Doç. Dr. Yurdakul AYGÖRMEZ

Course Objective

Design to teach the basics of projects stability

Course Content

Design to teach the basics of projects stability

Required Resources

Course Notes

Recommended Resources

Prof. Dr. Mehmet H. Omurtag, Statik ve Mukavemet, Nobel Yayınevi, 2010

Prof. Dr. Mehmet Bakioğlu, Doç. Dr. Ünal Aldemir, Doç. Dr. Abdül Hayır, Statik Çözümlü Problemler, Birsen Yayınevi, 2007.

Explanations

  • Midterm Examination: The date, time, and venue of the midterm examination will be announced by the Dean’s Office.
  • Practical Exercises: Practical exercises will be carried out in accordance with the topics covered during the course. Submission deadlines for each exercise will be announced separately.
  • Quizzes: Quizzes will be announced one week in advance, and the announcement will specify the course content to be covered.
  • Final Submission: The final submission will consist of six practical applications completed throughout the semester. These applications must be integrated into the student's architectural design project developed within the concurrent Architectural Design Studio. For each application topic, students are required to prepare one A3 or B2 presentation board that explains both the theoretical framework of the application and its implementation within the architectural project. Final submissions must be submitted both digitally and in printed format.
  • Final Assessment Policy: As the final assessment is based on a comprehensive project submission rather than a written examination, there is no make-up (resit) examination for this course.

Rules

  1. Attendance: According to the University Regulations, students who fail to attend at least 70% of the total course hours will receive a grade of DZ (Absent) and will automatically fail the course.

    Late Arrival: Students are expected not only to attend class but also to arrive on time. Please note that three late arrivals are considered equivalent to one full absence. A late arrival is defined as entering the classroom after attendance has been taken by the instructor and more than 10 minutes after the scheduled start of the class.

    Seeking Assistance: Students are encouraged to ask questions during class or office hours and to seek assistance whenever necessary. Obtaining timely support is an important part of the learning process and is strongly recommended.

    Academic Integrity: All coursework submitted for assessment must represent your own original work and effort. Acts of academic misconduct, including plagiarism and cheating, are subject to the University's Academic Integrity and Disciplinary Regulations and may result in disciplinary action and the corresponding sanctions.

    Assessment Policy: The assessment methods and grading criteria specified in this syllabus are final. No additional assignments, examinations, or make-up assessments will be offered for the purpose of improving course grades.

Course Learning Outcomes

  1. İzostatik sistemlerin iç kuvvet dağılımlarının belirlenmesi konusunda bilgi sahibi olur
  2. Normal kuvvet, kesme kuvveti, eğilme ve burulma gibi kavramları öğrenir
  3. Yapı elemanlarının en-kesit boyutlandırması konusunda bilgi sahibi olur

Core Area Distribution

(52) Engineering and Engineering Trades%60 (58) Architecture and Building%40

Teaching Methods

ExpressionQuestion-AnswerDiscussionExperiment - Test / Lab/ Workshop / Field Practice

Assessment & Evaluation

Performance Assignment ( Lab / Workshop / Field Work / Seminar / Presentation / Completion Study / ThesisTesting (Essay / Tests: True-Falls, multiple-choice, short answer, matching)

ECTS / Workload

ActivityQuantityDuration (h)Total Workload
Course Duration (Including Exam Week)15230
Out of Class Study Period14228
Midterm122
Quiz000
Assignment000
Practice000
Final122

Course Schedule

WeekSubjectPreparation
1Introduction; Free-Body Diagrams
2Forces, Moments, Loads, Support Types, and Equilibrium
3Support Reactions
4Sectional Force Diagrams
5Gerber Beam and Frame Sectional Forces
6Truss Beams
7Truss Beams
8Ara SınavAra Sınav
9Cross-Section; Determination of the Center of Gravity
10Moment of Inertia, Section Modulus, and Radius of Gyration
11Stress in Architecture
12Tension and Compression Members
13Bending Members
14Combined Strength
15Combined Strength
16Final SınavıFinal Sınavı