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Course Description

CourseCodeSemesterT+P (Hour)CreditECTS
MATERIALS SCIENCE-Fall Semester3+034
Course Program
Prerequisites Courses
Recommended Elective Courses
Language of CourseTurkish
Course LevelShort Cycle (Associate's Degree)
Course TypeRequired
Course CoordinatorAssist.Prof. Serkan BAŞLAYICI
Name of Lecturer(s)Assist.Prof. Serkan BAŞLAYICI
Assistant(s)
AimThe aims of the course is to give fundamental knowledge about type of materials, their usage, properties and characteristics, which are important in engineering design. It is also aimed to give a theoretical background about the analysis of behavior of engineering materials.
Course ContentThis course contains; Introduction and Terminology,Classification of Materials,Material Structure and Atomic Structure,Atomic and İonic levels,Atomic and İonic packing and defects,Atomic and İonic mobility, Diffusion,Mechanical properties and behaviors,Mechanical properties and behaviors,Mechanical Tests,Strengthening process of metals,Forming process of metals,Failure mechanism,Ceramic materials and properties,Polymer materials and properties.
Dersin Öğrenme KazanımlarıTeaching MethodsAssessment Methods
1) To classify engineering materials.10, 14, 16, 6, 9A
2) To describe the effects of atomic bonding, atomic package, crystallography, and bonds on material properties and behaviors.6, 9A
3) To define fundamental properties of materials and the factors which are effects the properties.14, 16, 9A
4) Define and choose the mechanical test methods for materials.12, 16, 17, 6, 9A
Teaching Methods:10: Discussion Method, 12: Problem Solving Method, 14: Self Study Method, 16: Question - Answer Technique, 17: Experimental Technique, 6: Experiential Learning, 9: Lecture Method
Assessment Methods:A: Traditional Written Exam

Course Outline

OrderSubjectsPreliminary Work
1Introduction and Terminology
2Classification of Materials
3Material Structure and Atomic Structure
4Atomic and İonic levels
5Atomic and İonic packing and defects
6Atomic and İonic mobility, Diffusion
7Mechanical properties and behaviors
8Mechanical properties and behaviors
9Mechanical Tests
10Strengthening process of metals
11Forming process of metals
12Failure mechanism
13Ceramic materials and properties
14Polymer materials and properties
Resources
Lecture notes will be given to students
William D. Callister "Materials Science and Engineering", Eight Edition ISBN:978-6051334189 Donald R. Askeland "The Science and Engineering of Materials", Sixth Edition ISBN:978-0495668022 Kaşif Onaran "Malzeme Bilimi" ISBN:9789755400141 Kaşif Onaran "Malzeme Bilimi Problemleri ve Çözümleri" ISBN:9789755400273

Course Contribution to Program Qualifications

Course Contribution to Program Qualifications
NoProgram QualificationContribution Level
12345
1
Offer necessary applications and solution proposals In the field of Construction Technologies.
X
2
Define adequate practical, theoretical and technical knowledge in suitable areas in the field of Construction Technology.
X
3
Use at least one CAD program for drawing architectural and static projects.
4
Demonstrate technical application skills in the design, repair and reinforcement of building elements.
X
5
Be able to recognize and select construction materials.
X
6
Aware of the necessity of life-long learning, constantly renew themselves by constantly monitoring developments in the field of Construction Technology and critically evaluate the knowledge and skills acquired.
X
7
Take an active role in the preparation and implementation phases of construction projects.
8
By acting in accordance with professional ethics, principles and values, become a model to colleagues and society.
X
9
Take part in researches, projects and events in cooperation with site staff and other auxiliary units with a sense of responsibility.
X
10
Use theoretical and practical knowledge in the field of Construction Technology.
X
11
Perform the necessary experiments in the fields of construction materials and soil mechanics and prepare reports of these experiments.
X
12
Calculate and report bill of quantities, cost and merit related to construction
X

Assessment Methods

Contribution LevelAbsolute Evaluation
Rate of Midterm Exam to Success 40
Rate of Final Exam to Success 60
Total 100
ECTS / Workload Table
ActivitiesNumber ofDuration(Hour)Total Workload(Hour)
Course Hours14342
Guided Problem Solving000
Resolution of Homework Problems and Submission as a Report11515
Term Project11515
Presentation of Project / Seminar000
Quiz000
Midterm Exam12020
General Exam12525
Performance Task, Maintenance Plan000
Total Workload(Hour)117
Dersin AKTS Kredisi = Toplam İş Yükü (Saat)/30*=(117/30)4
ECTS of the course: 30 hours of work is counted as 1 ECTS credit.

Detail Informations of the Course

Course Description

CourseCodeSemesterT+P (Hour)CreditECTS
MATERIALS SCIENCE-Fall Semester3+034
Course Program
Prerequisites Courses
Recommended Elective Courses
Language of CourseTurkish
Course LevelShort Cycle (Associate's Degree)
Course TypeRequired
Course CoordinatorAssist.Prof. Serkan BAŞLAYICI
Name of Lecturer(s)Assist.Prof. Serkan BAŞLAYICI
Assistant(s)
AimThe aims of the course is to give fundamental knowledge about type of materials, their usage, properties and characteristics, which are important in engineering design. It is also aimed to give a theoretical background about the analysis of behavior of engineering materials.
Course ContentThis course contains; Introduction and Terminology,Classification of Materials,Material Structure and Atomic Structure,Atomic and İonic levels,Atomic and İonic packing and defects,Atomic and İonic mobility, Diffusion,Mechanical properties and behaviors,Mechanical properties and behaviors,Mechanical Tests,Strengthening process of metals,Forming process of metals,Failure mechanism,Ceramic materials and properties,Polymer materials and properties.
Dersin Öğrenme KazanımlarıTeaching MethodsAssessment Methods
1) To classify engineering materials.10, 14, 16, 6, 9A
2) To describe the effects of atomic bonding, atomic package, crystallography, and bonds on material properties and behaviors.6, 9A
3) To define fundamental properties of materials and the factors which are effects the properties.14, 16, 9A
4) Define and choose the mechanical test methods for materials.12, 16, 17, 6, 9A
Teaching Methods:10: Discussion Method, 12: Problem Solving Method, 14: Self Study Method, 16: Question - Answer Technique, 17: Experimental Technique, 6: Experiential Learning, 9: Lecture Method
Assessment Methods:A: Traditional Written Exam

Course Outline

OrderSubjectsPreliminary Work
1Introduction and Terminology
2Classification of Materials
3Material Structure and Atomic Structure
4Atomic and İonic levels
5Atomic and İonic packing and defects
6Atomic and İonic mobility, Diffusion
7Mechanical properties and behaviors
8Mechanical properties and behaviors
9Mechanical Tests
10Strengthening process of metals
11Forming process of metals
12Failure mechanism
13Ceramic materials and properties
14Polymer materials and properties
Resources
Lecture notes will be given to students
William D. Callister "Materials Science and Engineering", Eight Edition ISBN:978-6051334189 Donald R. Askeland "The Science and Engineering of Materials", Sixth Edition ISBN:978-0495668022 Kaşif Onaran "Malzeme Bilimi" ISBN:9789755400141 Kaşif Onaran "Malzeme Bilimi Problemleri ve Çözümleri" ISBN:9789755400273

Course Contribution to Program Qualifications

Course Contribution to Program Qualifications
NoProgram QualificationContribution Level
12345
1
Offer necessary applications and solution proposals In the field of Construction Technologies.
X
2
Define adequate practical, theoretical and technical knowledge in suitable areas in the field of Construction Technology.
X
3
Use at least one CAD program for drawing architectural and static projects.
4
Demonstrate technical application skills in the design, repair and reinforcement of building elements.
X
5
Be able to recognize and select construction materials.
X
6
Aware of the necessity of life-long learning, constantly renew themselves by constantly monitoring developments in the field of Construction Technology and critically evaluate the knowledge and skills acquired.
X
7
Take an active role in the preparation and implementation phases of construction projects.
8
By acting in accordance with professional ethics, principles and values, become a model to colleagues and society.
X
9
Take part in researches, projects and events in cooperation with site staff and other auxiliary units with a sense of responsibility.
X
10
Use theoretical and practical knowledge in the field of Construction Technology.
X
11
Perform the necessary experiments in the fields of construction materials and soil mechanics and prepare reports of these experiments.
X
12
Calculate and report bill of quantities, cost and merit related to construction
X

Assessment Methods

Contribution LevelAbsolute Evaluation
Rate of Midterm Exam to Success 40
Rate of Final Exam to Success 60
Total 100

Numerical Data

Student Success

Ekleme Tarihi: 06/11/2023 - 14:23Son Güncelleme Tarihi: 06/11/2023 - 14:23