Course Information


Course Information
Course Title Code Semester L+U Hour Credits ECTS
PRINCIPLES OF MATERIALS SCIENCE PEN206 4. Semester 3 + 0 3.0 4.0

Prerequisites None

Language of Instruction English
Course Level Bachelor's Degree
Course Type Compulsory
Mode of delivery
Course Coordinator
Instructors
Assistants
Goals Classification of the materials used in Material Sience and Engineering and determination of their physical properties.
Course Content Introduction, Atomic Structure and Interatomic Bonding, The Structure of Crystalline Solids, Imperfections in Solids, Diffusion, Mechanical Properties of Metals, Dislocations and Strengthening Mechanisms, Failure
Learning Outcomes 1) Importance of Materials
2) Technological application of materials
3) Interdisipliniary of Materials Science

Weekly Topics (Content)
Week Topics Teaching and Learning Methods and Techniques Study Materials
1. Week Introduction :Materials Science and its imporatnce Lecture; Question Answer; Problem Solving; Discussion
Brainstorming
Homework Presentation (Including Preparation Time) Project (Including Preparation and presentation Time)
2. Week Atomik Structure and bonding 1 Lecture; Question Answer; Problem Solving; Discussion
Brainstorming
Homework Presentation (Including Preparation Time) Project (Including Preparation and presentation Time)
3. Week Atomic Structure and bonding 2 Lecture; Question Answer; Problem Solving; Discussion
Brainstorming
Homework Project (Including Preparation and presentation Time)
4. Week Crystal Structure 1 Lecture; Question Answer; Problem Solving; Discussion
Brainstorming
Homework Presentation (Including Preparation Time)
5. Week Crystal Structure 2 Lecture; Question Answer; Problem Solving; Discussion
Brainstorming
Homework Presentation (Including Preparation Time) Project (Including Preparation and presentation Time)
6. Week Defects in Materials 1 Lecture; Question Answer; Problem Solving; Discussion
Brainstorming
Homework Presentation (Including Preparation Time) Project (Including Preparation and presentation Time) Report (Including Preparation and presentation Time)
7. Week Defects in materials 2 Lecture; Question Answer; Problem Solving; Discussion
Brainstorming
Homework Presentation (Including Preparation Time) Project (Including Preparation and presentation Time)
8. Week Diffusion 1 Lecture; Question Answer; Problem Solving; Discussion
Brainstorming
Homework Presentation (Including Preparation Time) Project (Including Preparation and presentation Time)
9. Week Diffusion 2 Lecture; Question Answer; Problem Solving; Discussion
Brainstorming
Homework Presentation (Including Preparation Time) Project (Including Preparation and presentation Time)
10. Week Mechanical properties of metals Lecture; Question Answer; Problem Solving; Discussion
Brainstorming
Homework Presentation (Including Preparation Time) Project (Including Preparation and presentation Time)
11. Week Mechanical properties of metals 2 Lecture; Question Answer; Problem Solving; Discussion
Brainstorming
Homework Presentation (Including Preparation Time) Project (Including Preparation and presentation Time)
12. Week Classification of materials Lecture; Question Answer; Problem Solving; Discussion
Brainstorming
Homework Presentation (Including Preparation Time) Project (Including Preparation and presentation Time)
13. Week Materials preparation methods Lecture; Question Answer; Problem Solving; Discussion
Brainstorming
Homework Presentation (Including Preparation Time) Project (Including Preparation and presentation Time)
14. Week Exam


Sources Used in This Course
Recommended Sources
The Science and Engineering of Materials, Donald R. Askeland, Pradeep P. Fulay, Wendelin J. Wrigth, yayınevi: Cengage Learning

Relations with Education Attainment Program Course Competencies
Program RequirementsContribution LevelDK1DK2DK3
PY15353
PY25434
PY35000
PY45000
PY55000

*DK = Course's Contrubution.
0 1 2 3 4 5
Level of contribution None Very Low Low Fair High Very High
.

ECTS credits and course workload
Event Quantity Duration (Hour) Total Workload (Hour)
Course Duration (Total weeks*Hours per week) 14 3
Work Hour outside Classroom (Preparation, strengthening) 15 2
Homework 1 5
Midterm Exam 1 10
Time to prepare for Midterm Exam 1 10
Final Exam 1 15
Time to prepare for Final Exam 1 10
Total Workload
Total Workload / 30 (s)
ECTS Credit of the Course
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Course Information