Course Information

Course Information
Course Title Code Language Type Semester L+U Hour Credits ECTS
Computer Aided Technical Drawing INS101 Turkish Compulsory 1. Semester 2 + 2 3.0 4.0
Prerequisite Courses
Course Level Undergraduate
Mode of delivery Face to face, Application
Course Coordinator Doç. Dr. Bekir ÇOMAK
Instructor(s) Doç. Dr. Bekir ÇOMAK (Güz), Öğr. Gör. Metin Mevlüt UZUNOĞLU (Güz)
Goals To gain the knowledge and skills to draw with a computer-aided drawing program and to use the computer effectively in project drawing.
Course Content Technical drawing and CAD terms and concepts, program interface, learning the AUTOCAD program, introduction of basic drawing commands, perspective drawings, views, sectioning, dimensioning, project drawing and applications
Learning Outcomes
# Öğrenme Kazanımı
1 It uses the AUTOCAD computer program.
2 Three-dimensional thinking ability and skill
3 Having enough knowledge to read a technical drawing on a subject related to his/her profession
4 Knows and interprets the basic principles of technical drawing.
5 Understands and makes engineering drawings using computers.
6 Draws the views of an object given its perspective.
7 Draws the perspective of an object given its views.
Lesson Plan (Weekly Topics)
Week Topics/Applications Method
1. Week General information about computer aided drawing, introduction to AutoCAD software, installation and running Preparation, After Class Study, Interview, Presentation (Preparation)
2. Week Definitions, purpose of technical drawings, lines, linetypes and their use Preparation, After Class Study, Interview, Presentation (Preparation)
3. Week Autocad display settings, file menu, drawing aids, coordinate systems Preparation, After Class Study, Interview, Presentation (Preparation)
4. Week Draw commands (line, construction line, mline, circle, arc ...), Geometric drawing applicationsDraw commands (line, construction line, mline, circle, arc ...), Geometric drawing applications Preparation, After Class Study, Interview, Presentation (Preparation)
5. Week Text and zoom commands, Layers, Modify commands (trim, offset, erase, move, copy ...), Geometric drawing applications Preparation, After Class Study, Interview, Presentation (Preparation)
6. Week Draw commands (rectangle, polyline, polygone, ellipse, spline ...), Geometric drawing applications, Projection and epur methods Preparation, After Class Study, Interview, Presentation (Preparation)
7. Week Modify commands (array, scale, extend, lengthen, fillet, chamfer ...), Geometric drawing applications, Projection and epur methods Preparation, After Class Study, Fieldwork, Practice
8. Week Scale, Dimension settings and application. Dimensioning commands, rules and related applications. Design geometry and perspective drawings Preparation, After Class Study, Interview, Presentation (Preparation)
9. Week Scale, Dimension settings and application. Dimensioning commands, rules and related applications. Design geometry and perspective drawings Preparation, After Class Study, Interview, Presentation (Preparation)
10. Week Hatch and applications. Views and sections Preparation, After Class Study, Interview, Presentation (Preparation)
11. Week Blocks, Inquary commands. Views and sections Preparation, After Class Study, Interview, Presentation (Preparation)
12. Week Drawing and examining professional symbols and representations. Civil Engineering technical drawing applications Preparation, After Class Study, Interview, Presentation (Preparation)
13. Week Civil Engineering technical drawing applications Preparation, After Class Study, Interview, Presentation (Preparation)
14. Week Printing, plot settings, calculations, drawing settings. Civil Engineering technical drawing applications. Preparation, After Class Study, Interview, Presentation (Preparation)
*Midterm and final exam dates are not specified in the 14-week course operation plan. Midterm and final exam dates are held on the dates specified in the academic calendar with the decision of the University Senate.
The Matrix for Course & Program Learning Outcomes
No Program Requirements Level of Contribution
1 2 3 4 5
1 To have sufficient foundations on engineering subjects such as science and discrete mathematics and basic engineering; an ability to use theoretical and applied knowledge of these subjects together for engineering solutions
2 An ability to determine, describe, formulate and solve engineering problems in engineering application; for this purpose, an ability to select and apply proper analytic and modeling methods
3 An ability to analyze a system, a component or a process and design a system under real limits to meet desired needs; in this direction, an ability to apply modern design methods
4 An ability to select and use modern techniques and tools for engineering applications; an ability to use information technologies efficiently, and ability to use at least one programming language
5 An ability to select and use modern techniques and tools for engineering applications; an ability to use information technologies efficiently, and ability to use at least one programming language. An ability to search on sources, collect data, design and conduct experiment, analyze and interpret the results and translate to engineering application
6 An ability to work efficiently in multidisciplinary teams, self-confidence to take responsibility
7 Ability to communicate effectively verbally and in writing in Turkish and to know at least one foreign language in level of following innovations in the field
8 An awareness about importance of lifelong learning; an ability to access to information, to follow developments in science and technology and update his/her knowledge continuously by means of following advances in science and technology
9 Understanding, practicing of professional and ethical responsibilities, an ability to disseminate this responsibility on society
10 An understanding of project management, workplace applications, health issues of laborers, environment and job safety; an awareness about legal consequences of engineering applications
11 An understanding universal and local effects of engineering solutions; awareness of entrepreneurial and innovation and to have knowledge about contemporary problems
12 An ability to inspect on-site and apply technological and industrial production processes
Relations with Education Attainment Program Course Competencies
Program Requirements DK1 DK2 DK3 DK4 DK5 DK6 DK7
PY1 0 0 0 0 0 0 0
PY2 0 0 0 0 0 0 0
PY3 0 0 0 0 0 0 0
PY4 0 0 0 0 0 0 0
PY5 0 0 0 0 0 0 0
PY6 0 0 0 0 0 0 0
PY7 0 0 0 0 0 0 0
PY8 0 0 0 0 0 0 0
PY9 0 0 0 0 0 0 0
PY10 0 0 0 0 0 0 0
PY11 0 0 0 0 0 0 0
PY12 0 0 0 0 0 0 0
Recommended Sources
Ders Kitabı veya Notu Ders Kitabı veya Ders Notu bulunmamaktadır.
Diğer Kaynaklar
  • 1. P. Öcal, “Yapı Teknik Resmi Cilt I”, Birsen Yayınevi, 2006
  • 2. P. Öcal, “Yapı Teknik Resmi Cilt II”, Birsen Yayınevi, 2010
  • 3. MEB, "İnşaat Teknik Resmi"Devlet Kitapları Müdürlüğü, 2004
  • 4.Keskin K. Ç., "İnşaat Teknik Resim", 1990
  • 5. İnşaat Mühendisleri ve Mimarlar için yazılmış AutoCAD kitapları
Evaluation Method
Güz Dönemi
Responsible Personnel Grup Evaluation Method Percentage
Doç. Dr. Bekir ÇOMAK NÖ A Vize 30.00
Doç. Dr. Bekir ÇOMAK NÖ A Ödev 30.00
Doç. Dr. Bekir ÇOMAK NÖ A Final 40.00
Toplam 100.00
Öğr. Gör. Metin Mevlüt UZUNOĞLU NÖ B Ödev 30.00
Öğr. Gör. Metin Mevlüt UZUNOĞLU NÖ B Vize 30.00
Öğr. Gör. Metin Mevlüt UZUNOĞLU NÖ B Final 40.00
Toplam 100.00
ECTS credits and course workload
ECTS credits and course workload Quantity Duration (Hour) Total Workload (Hour)
Ders İçi
Class Hours 14 4 56
Ders Dışı
Preparation, After Class Study 14 1 14
Sınavlar
Midterm 1 1 1 1
Homework 1 12 2 24
Final 1 2 2
Practice 14 1 14
Classroom Activities 14 3 42
Total Workload 153
*AKTS = (Total Workload) / 25,5 ECTS Credit of the Course 4.0