Undergraduate
Faculty of Engineering and Architecture
Industrial Engineering
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Engineering Graphics

Course CodeSemester Course Name LE/RC/LA Course Type Language of Instruction ECTS
IE1601 1 Engineering Graphics 2/2/0 CC English 5
Course Goals
 The primary goal of this course is to equip the students with an understanding of  the basics of engineering drawing.
Prerequisite(s) -
Corequisite(s) -
Special Requisite(s) The minimum qualifications that are expected from the students who want to attend the course.(Examples: Foreign language level, attendance, known theoretical pre-qualifications, etc.)
Instructor(s) Lecturer Tuğçe Beldek
Course Assistant(s) Ayşe Paksoy
Schedule This course is not offered in this semester.
Office Hour(s) This course is not offered in this semester.
Teaching Methods and Techniques
- Demonstrations,

- Presentations,

- Example drawing analysis,

- Lab works
Principle Sources - Lecture Notes

- Kutlu DARILMAZ, 2014. "İnşaat Mühendisleri için AutoCAD Kullanımına Giriş", Sage Yayıncılık

ISBN : 978-605-4738-83-0

Other Sources -
Course Schedules
Week Contents Learning Methods
1. Week Introduction to engineering drawing Presentation
2. Week Drawing tools and their use Presentation, Laboratory
3. Week Coordinate systems Autocad workspace Autocad commands- OSNAP and POLAR Presentation, Laboratory
4. Week Autocad commands- LINE, CIRCLE and TRIM Presentation, Laboratory
5. Week General information on projection systems AutoCAD commands - COPY, MOVE, ROTATE, MIRROR, SCALE and FILLET Presentation, Laboratory
6. Week Projection and projection methods AutoCAD commands - ARRAY, OFFSET and PROPERTIES Presentation, Laboratory
7. Week Axonometric projection AutoCAD commands - BREAK, STRETCH, LENGTHEN, TEXT and MTEXT Presentation, Laboratory
8. Week Isometric Projection AutoCAD commands- ARC, OTRHO, OTRACK and QuickSelect Presentation, Laboratory
9. Week Isometric Projection AutoCAD command - PLINE Presentation, Laboratory
10. Week Orthographic projection systems Presentation, Laboratory
11. Week Orthographic projection systems Line types Presentation, Laboratory
12. Week Isometric drawing Presentation, Drawing analysis examples, Laboratory
13. Week Crosssection views AutoCAD commands - HATCH ve BHATCH, Speed drawing methods in Autocad workspace Presentation, Drawing analysis examples, Laboratory
14. Week Scales and scaling, Scales and scaling Autocad - 3D drawings Presentation, Drawing analysis examples, Laboratory
15. Week Final Exam
16. Week Final Exam
17. Week Final Exam
Assessments
Evaluation tools Quantity Weight(%)
Midterm(s) 1 40
Final Exam 1 60


Program Outcomes
PO-1Ability to apply theoretical and practical knowledge gained by Mathematics, Science and their engineering fields and ability to use their knowledge in solving complex engineering problems.
PO-2Ability of determining, defining, formulating and solving complex engineering problems; for that purpose develop the ability of selecting and implementing suitable models and methods of analysis.
PO-3Ability of designing a complex system, process, device or product under real world constraints and conditions serving certain needs; for this purpose ability of applying modern design techniques
PO-4Ability of selecting and using the modern techniques and devices which are necessary for analyzing and solving complex problems in engineering implementations; ability of efficient usage of information technologies.
PO-5Ability of designing experiments, conducting tests, collecting data and analyzing and interpreting the solutions to investigate of complex engineering problems or discipline-specific research topics.
PO-6Ability of working efficiently in intra-disciplinary and multi-disciplinary teams; individual working ability and habits.
PO-7Ability of verbal and written communication skills; and at least one foreign language skills, ability to write effective reports and understand written reports, ability to prepare design and production reports, ability to make impressive presentation, ability to give and receive clear and understandable instructions
PO-8Awareness of importance of lifelong learning; ability to access data, to follow up the recent innovation in science and technology for continuous self-improvement.
PO-9Conformity to ethical principles; knowledge about occupational and ethical responsibility, and standards used in engineering applications.
PO-10Knowledge about work life implementations such as project management, risk management and change management; awareness about entrepreneurship and innovativeness; knowledge about sustainable development.
PO-11Knowledge about effects of engineering applications on health, environment and security in global and social dimensions, and on the problems of the modern age in engineering; awareness about legal outcomes of engineering solutions.
Learning Outcomes
LO-1To learn the basic rules of engineering drawing
LO-2To understand engineering drawings
LO-3To be able to convey information from engineering drawings to another person.
LO-4To be able to convey visual information on conceived objects to another person through engineering drawings.
LO-5To develop the ability of thinking in three dimensions
Course Assessment Matrix:
Program Outcomes - Learning Outcomes Matrix
 PO 1PO 2PO 3PO 4PO 5PO 6PO 7PO 8PO 9PO 10PO 11
LO 1
LO 2
LO 3
LO 4
LO 5