Course Information

Course Information
Course Title Code Semester L+U Hour Credits ECTS
- CEV2183 4. Semester 2 + 2 3.0 3.0
Prerequisites None
Language of Instruction Turkish
Course Level Associate
Course Type
Mode of delivery Face to face
Course Coordinator
Instructor(s) Elif SAHTİYANCI
Assistants
Goals Teaching basic computer aided software programs (CAD programs) used in the basic work areas of Environmental Engineering. To teach AutoCAD and NETCAD programs for this purpose.
Course Content Explanation of the importance of computer aided design course and the relationship between CAD and CAM systems Computer-aided design and description of stand and bearing connection and bearing position in bearing Explanation of assembly commands in Solidwork drawing program Explanation on bearing of shaft and pulley connection with sliding bearing Comparison of roller bearings and sliding bearings and explanation of their mounting styles Explanation of safety valve publication's task and pressure relationship Explanation of drawing of the assembly image section Giving basic features of map based Cad program Transfer of data sources and data to computer environment in CAD programs Raster Menu Layer structure, teaching drawing options Teaching of drawing features Giving query options Taking map output
Learning Outcomes - To be able to comprehend the basic components of computer aided design program.
- To learn CAD programs for machine design.
- To learn CAD programs for solid modeling.
- Learning map based CAD programs.
Weekly Topics (Content)
Week Topics Learning Methods
1. Week Explanation of the importance of computer aided design course and the relationship between CAD and CAM systems Other Activities Research Course Hours Preparation, After Class Study
2. Week Computer-aided design and description of stand and bearing connection and bearing position in bearing Research Other Activities Preparation, After Class Study Course Hours
3. Week Explanation of assembly commands in Solidwork drawing program Course Hours Preparation, After Class Study Research
4. Week Explanation on bearing of shaft and pulley connection with sliding bearing Preparation, After Class Study Course Hours Other Activities Research
5. Week Comparison of roller bearings and sliding bearings and explanation of their mounting styles Preparation, After Class Study Other Activities Course Hours Research
6. Week Explanation of safety valve publication's task and pressure relationship Research Preparation, After Class Study Course Hours Other Activities
7. Week Explanation of drawing of the assembly image section Preparation, After Class Study Other Activities Course Hours Research
8. Week Explanation of drawing of the assembly image section Preparation, After Class Study Course Hours Other Activities Research
9. Week Giving basic features of map based Cad program Preparation, After Class Study Course Hours Research
10. Week Transfer of data sources and data to computer environment in CAD programs Course Hours
11. Week Raster Menu Research Course Hours Preparation, After Class Study Other Activities
12. Week Layer structure, teaching drawing options Course Hours Preparation, After Class Study Other Activities Research
13. Week Teaching of drawing features Course Hours Preparation, After Class Study Other Activities Research
14. Week Giving query options Research Course Hours Other Activities Preparation, After Class Study
Recommended Sources
1) B. Uygur, AutoCAD R12 for windows, Alfa Basım Yayım Dağıtım, İstanbu, 1994. 2) T.C. Chang, R.A. Wysk, H.P. Wang, Computer-Aided Manufacturing, Second Edition, Prentice-Hall, 1998. 3) A.Watt, 3D Computer Graphics, Third Edition, Addison-Wesley, 2000.
Relations with Education Attainment Program Course Competencies
Program Requirements Contribution Level DK1 DK2 DK3 DK4 Measurement Method
PY1 0 0 0 0 0 -
PY6 5 5 5 5 5 40,60
*DK = Course's Contrubution.
0 1 2 3 4 5
Course's Level of contribution None Very Low Low Fair High Very High
Method of assessment/evaluation Written exam Oral Exams Assignment/Project Laboratory work Presentation/Seminar
ECTS credits and course workload
Event Quantity Duration (Hour) Total Workload (Hour)
Practice 10 1 10
Visual Presentation 10 1 10
Research 5 1 5
Preparation, After Class Study 12 1 12
Course Hours 14 2 28
Midterm 1 1 1 1
Homework 1 1 1.5 1.5
Homework 2 2 1.5 3
Final 1 2 2
Classroom Activities 4 1 4
Total Workload 76.5
ECTS Credit of the Course 3.0