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SECTION I: GENERAL INFORMATION ABOUT THE COURSE

Course Code Course Name Year Semester Theoretical Practical Credit ECTS
60731TATOZ-MIM0271 Architectural Representation Techniques 1 Fall 2 2 3 5
Course Type : Compulsory
Cycle: Bachelor      TQF-HE:6. Master`s Degree      QF-EHEA:First Cycle      EQF-LLL:6. Master`s Degree
Language of Instruction: Turkish
Prerequisities and Co-requisities: N/A
Mode of Delivery: Face to face
Name of Coordinator: Instructor AYŞEGÜL ÇELTEKLİGİL
Dersin Öğretim Eleman(lar)ı: Instructor AYŞEGÜL ÇELTEKLİGİL
Instructor SIRMA KONUK
Dersin Kategorisi: Field Specific

SECTION II: INTRODUCTION TO THE COURSE

Course Objectives & Content

Course Objectives: The aim of this course is to able to understand and use architectural expression techniques that they can use in the architectural design process and presentation. Another main objects of course are to be able to acquire the ability to draw technical drawing within the basic technical drawing rules, which is a universal common language, and to develop the ability to read technical drawing by understanding the drawing tools and materials and mastering the usage techniques.
Course Content: The definition of architectural tools and using principles; technical writing, line types and their properties; projection, elevation, plan, section, perspective concepts and the techniques of these drawings; the dimensioning issues; the various drawing applications for each concept, including preparing letterheads for drawings and creating original human figures.

Course Specific Rules

In the practice-oriented course, the student is expected to draw the practice given throughout the course every week.

Course Learning Outcomes (CLOs)

Course Learning Outcomes (CLOs) are those describing the knowledge, skills and competencies that students are expected to achieve upon successful completion of the course. In this context, Course Learning Outcomes defined for this course unit are as follows:
Knowledge (Described as Theoritical and/or Factual Knowledge.)
Skills (Describe as Cognitive and/or Practical Skills.)
Competences (Described as "Ability of the learner to apply knowledge and skills autonomously with responsibility", "Learning to learn"," Communication and social" and "Field specific" competences.)
  1) . Teknik çizim kavramı, tarihçesi ve teknikleri, araç gereçlerin kullanım şekilleri ve kağıt boyutları hakkında bilgi sahibidir. 2. Teknik çizim konularından çizgi ve yazı kullanımı, teslimlerde antet tasarımı konularında bilgi sahibidir. 3. Temel geometrik çizimleri, teknik çizim kuralları doğrultusunda araç gereçler yardımıyla yapabilir. 4. Teknik çizim ana konularından izdüşüme hakimdir; noktanın, doğrunun, düzlemin ve cisimlerin izdüşümünü çizebilir. 5. Teknik çizim ana konularından görünüşe hakimdir; bir makine parçasının eksik görünüşleri, mimari cephe görünüşleri ve iç mekandan görünüşler çizebilir. 6. Teknik çizim ana konularından plan ve kesite hakimdir; bir makine parçasının kesitlerini, mimari ve iç mekan detay kesitleri çizebilir. 7. Teknik çizim ana konularından perspektife hakimdir; bir makine parçasının, mimari bir yapının ya da bir iç mekanın perspektifini çizebilir.

Weekly Course Schedule

Week Subject
Materials Sharing *
Related Preparation Further Study
1)
2)
3)
4)
5)
6)
7)
8)
9)
10)
11)
12)
13)
14)
*These fields provides students with course materials for their pre- and further study before and after the course delivered.

Recommended or Required Reading & Other Learning Resources/Tools

Course Notes / Textbooks: Şahinler, O. ve Fehmi Kızıl. Mimarlıkta Teknik Resim, Yapı Yayın, 2003.
Onat,E. Perspektif ve Perspektifte Gölge Çizimi, Elif Yayınevi, 2019.
References: Andrews, J., Architectural Visions Contemporary Sketches Perspectives Drawings, Braun, 2009.
Architectural Graphic Standards: Student Edition, 12th Edition. John Wiley & Sons, 2016.
Ching, F., Architectural Graphics. John Wiley & Sons: NY, 2009.
Ching, Francis D. K., A Visual Dictionary of Architecture. New York: Van Nostrand Reinhold, 1995.
Ching, Francis D. K., Mimarlık: Biçim, Mekân ve Düzen, Yem Yayınları, 1996.
Ching, Francis D. K., Steven P. Juroszek, AIA. Design Drawing, 2nd Edition. John Wiley & Sons: 2011.
Ching F., Green J.N., & Lasseau, P. Graphic Communication. In Erpi, F. & Gürsu H. (Eds.), Ankara: ODTÜ Basım İşliği, 1986.
Ching, Francis, Drawing: A Creative Process. New York: John Wiley & Sons, 1990.
Edwards, B., Understanding Architecture Through Drawing. Taylor & Francis: 2008.
Hotan, H. Mimari Perspektif ve Gölge, Yapı Endüstri Merkezi Yayınları, 1999.
Itten, Johannes, The art of color: the subjective experience and objective rationale of color, John Wiley & Sons, 1975.
Lasean, Paul, Graphic Thinking for Architects and Designers. New York: Van Nostrand Reinhold, 1989.
Manual of Graphic Techniques: Medium and Methods, V: 1, 2, 3., New York: Butterworth Architecture, 1980.
McGarry, Richard., Scale Elements for Design Elevations. New York: Van Nostrand Reinhold, 1991.
Zell, M. The Architectural Drawing Course, Thames & Hudson Smith, K. S., Architects Sketches. Elsevier, 2009.

SECTION III: RELATIONSHIP BETWEEN COURSE UNIT AND COURSE LEARNING OUTCOMES (CLOs)

(The matrix below shows how the course learning outcomes (CLOs) associates with programme learning outcomes (both KPLOs & SPLOs) and, if exist, the level of quantitative contribution to them.)

Relationship Between CLOs & PLOs

(KPLOs and SPLOs are the abbreviations for Key & Sub- Programme Learning Outcomes, respectively. )
CLOs/PLOs KPLO 1 KPLO 2 KPLO 3 KPLO 4 KPLO 5
1 2 3 4 5 6 7 1 2 3 4 1 2 3 4 5 6 7 8 9 10 11 12 13 1 2 3 4 1 2 3 4 5 6 7 8 9 10 11 12
CLO1

Level of Contribution of the Course to PLOs

No Effect 1 Lowest 2 Low 3 Average 4 High 5 Highest
           
Programme Learning Outcomes Contribution Level (from 1 to 5)
1) Uses and applies theoretical, factual and applied sciences for the solution of architectural problems in line with user requirements in the context of history, art, culture, environment, human and technology.
2) Analyzes, models, evaluates architectural design and construction projects; designs and develops models to meet spesific requirements under realistic constraints and conditions. For this purpose, it selects and uses appropriate methods, tools and technologies.
3) Owns the competencies required by the constantly developing field of architecture and the global competitive environment.
4) Applies the theoretical knowledge in business life during a semester.
5) S/he acquires the competencies that develop in line with the expectations of business world and the society defined as the institutional outcomes of our university on the basic level in relation with his/her field.

SECTION IV: TEACHING-LEARNING & ASSESMENT-EVALUATION METHODS OF THE COURSE

Teaching & Learning Methods of the Course

(All teaching and learning methods used at the university are managed systematically. Upon proposals of the programme units, they are assessed by the relevant academic boards and, if found appropriate, they are included among the university list. Programmes, then, choose the appropriate methods in line with their programme design from this list. Likewise, appropriate methods to be used for the course units can be chosen among those defined for the programme.)
Teaching and Learning Methods defined at the Programme Level
Teaching and Learning Methods Defined for the Course
Lectures
Discussion
Case Study
Problem Solving
Demonstration
Views
Laboratory
Reading
Homework
Project Preparation
Thesis Preparation
Peer Education
Seminar
Technical Visit
Course Conference
Brain Storming
Questions Answers
Individual and Group Work
Role Playing-Animation-Improvisation
Active Participation in Class

Assessment & Evaluation Methods of the Course

(All assessment and evaluation methods used at the university are managed systematically. Upon proposals of the programme units, they are assessed by the relevant academic boards and, if found appropriate, they are included among the university list. Programmes, then, choose the appropriate methods in line with their programme design from this list. Likewise, appropriate methods to be used for the course units can be chosen among those defined for the programme.)
Aassessment and evaluation Methods defined at the Programme Level
Assessment and Evaluation Methods defined for the Course
Midterm
Presentation
Final Exam
Quiz
Report Evaluation
Homework Evaluation
Oral Exam
Thesis Defense
Jury Evaluation
Practice Exam
Evaluation of Implementation Training in the Workplace
Active Participation in Class
Participation in Discussions

Relationship Between CLOs & Teaching-Learning, Assesment-Evaluation Methods of the Course

(The matrix below shows the teaching-learning and assessment-evaluation methods designated for the course unit in relation to the course learning outcomes.)
LEARNING & TEACHING METHODS
COURSE LEARNING OUTCOMES
ASSESMENT & EVALUATION METHODS
CLO1
-Lectures -Midterm
-Discussion -Presentation
-Case Study -Final Exam
-Problem Solving -Quiz
-Demonstration -Report Evaluation
-Views -Homework Evaluation
-Laboratory -Oral Exam
-Reading -Thesis Defense
-Homework -Jury Evaluation
-Project Preparation -Practice Exam
-Thesis Preparation -Evaluation of Implementation Training in the Workplace
-Peer Education -Active Participation in Class
-Seminar - Participation in Discussions
-Technical Visit
-Course Conference
-Brain Storming
-Questions Answers
-Individual and Group Work
-Role Playing-Animation-Improvisation
-Active Participation in Class

Contribution of Assesment & Evalution Activities to Final Grade of the Course

Measurement and Evaluation Methods # of practice per semester Level of Contribution
Application 10 % 30.00
Midterms 1 % 20.00
Semester Final Exam 1 % 50.00
Total % 100
PERCENTAGE OF SEMESTER WORK % 50
PERCENTAGE OF FINAL WORK % 50
Total % 100

SECTION V: WORKLOAD & ECTS CREDITS ALLOCATED FOR THE COURSE

WORKLOAD OF TEACHING & LEARNING ACTIVITIES
Teaching & Learning Activities # of Activities per semester Duration (hour) Total Workload
Course 0 0 0
Laboratory 0 0 0
Application 6 30 180
Special Course Internship (Work Placement) 0 0 0
Field Work 0 0 0
Study Hours Out of Class 0 0 0
Presentations / Seminar 0 0 0
Project 0 0 0
Homework Assignments 0 0 0
Total Workload of Teaching & Learning Activities - - 180
WORKLOAD OF ASSESMENT & EVALUATION ACTIVITIES
Assesment & Evaluation Activities # of Activities per semester Duration (hour) Total Workload
Quizzes 0 0 0
Midterms 1 20 20
Semester Final Exam 1 50 50
Total Workload of Assesment & Evaluation Activities - - 70
TOTAL WORKLOAD (Teaching & Learning + Assesment & Evaluation Activities) 250
ECTS CREDITS OF THE COURSE (Total Workload/25.5 h) 5