MEC458 Nanoteknolojiye GirişInstitutional InformationDegree Programs Mechanical Engineering (English)Information For StudentsDiploma SupplementErasmus Policy StatementNational Qualifications
Mechanical Engineering (English)

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Bachelor TR-NQF-HE: Level 6 QF-EHEA: First Cycle EQF-LLL: Level 6

Course General Introduction Information

Course Code: MEC458
Course Name: Nanoteknolojiye Giriş
Course Semester: Spring
Course Credits:
ECTS
6
Language of instruction:
Course Requirement:
Does the Course Require Work Experience?: No
Type of course: Area Ellective
Course Level:
Bachelor TR-NQF-HE:6. Master`s Degree QF-EHEA:First Cycle EQF-LLL:6. Master`s Degree
Mode of Delivery: Face to face
Course Coordinator : Dr.Öğr.Üyesi EBRU GÜNİSTER
Course Lecturer(s): Asst. Prof. Ebru Gunister
Course Assistants:

Course Purpose and Content

Course Objectives: To teach the fundamental concepts, principles, and applications of nanotechnology; to convey to students the potential uses and technological innovations of nanotechnology in the field of mechanical engineering.
Course Content: This course provides a comprehensive understanding of the basic concepts of nanotechnology, nanomaterials, manufacturing methods, and industrial applications. Students will learn about the roles and significance of nanotechnology in various fields such as sensors, actuators, and energy storage.

Learning Outcomes

The students who have succeeded in this course;
1) Understanding the basic principles, concepts, and applications of nanotechnology
2) Understanding the properties, synthesis methods, and characterization techniques of nanomaterials.
3) Examining the industrial applications and biomedical uses of nanotechnology.
4) Keeping up with current developments in nanotechnology and evaluating ethical issues.

Course Flow Plan

Week Subject Related Preparation
1) Introduction to Nanotechnology and Basic Concepts Lecture Notes 1
2) Properties and Synthesis of Nanomaterials Lecture Notes 2
3) Characterization Techniques in Nanotechnology Lecture Notes 3
4) Carbon-Based Nanomaterials: Graphene and Nanotubes Lecture Notes 4
5) Nanotechnological Applications: Sensors and Actuators Lecture Notes 5
6) Nano-Electronics and Nanophotonics Lecture Notes 6
7) Nanocomposite Materials and Structures Lecture Notes 7
8) Bio-Nanotechnology and Medical Applications Lecture Notes 8
9) Nano-Energy and Energy Storage Lecture Notes 9
10) Environmental Applications and Nano-Toxicology Lecture Notes 10
11) Nano-Material Mechanics and Durability Lecture Notes 11
12) Nanotechnology and Industrial Applications Lecture Notes 12
13) Safety and Ethical Issues in Nanotechnology Lecture Notes 13
14) Nanotechnology Projects and Presentations The presentation slides

Sources

Course Notes / Textbooks: Nanoteknoloji: Nanobilim ve Nanoteknolojiye Giriş - Hüseyin Çelik
Introduction to Nanotechnology - Charles P. Poole Jr., Frank J. Owens
References: Nanoteknoloji: Boyutların Büyüsü - Ersan Özçelik
Nanoteknoloji: Güncel ve Gelecek Uygulamalarıyla - Ahmet Oral
Nanotechnology: Understanding Small Systems - Ben Rogers, Jesse Adams, Sumita Pennathur
Nanomaterials: Synthesis, Properties, and Applications - A. S. Edelstein, R. C. Cammarata
Handbook of Nanotechnology - Bharat Bhushan

Course - Learning Outcome Relationship

No Effect 1 Lowest 2 Medium 3 Highest
       
Program Outcomes Level of Contribution
1) Having advanced theoretical and practical knowledge supported by textbooks, application tools and other resources containing current information in the field.
2) Ability to use advanced theoretical and practical knowledge acquired in the field.
3) Ability to interpret and evaluate data, identify and analyze problems, and develop solution suggestions based on research and evidence, using the advanced knowledge and skills acquired in the field.
4) To be able to inform relevant people and institutions on issues related to the field; Ability to convey thoughts and solution suggestions to problems in written and oral form.
5) Ability to share one's thoughts on issues related to one's field and solutions to problems, supported by quantitative and qualitative data, with experts and non-experts.
6) Ability to organize and implement projects and events for the social environment in which one lives with awareness of social responsibility.
7) Ability to monitor knowledge in the field and communicate with colleagues by using a foreign language at least at the European Language Portfolio B1 General Level.
8) Ability to use information and communication technologies along with computer software at least at the Advanced Level of the European Computer Usage License required by the field.
9) Acting in accordance with social, scientific, cultural and ethical values during the collection, interpretation, application and announcement of the results of data related to the field.
10) Having sufficient awareness about the universality of social rights, social justice, quality culture and protection of cultural values, environmental protection, occupational health and safety.
11) Ability to evaluate the advanced knowledge and skills acquired in the field with a critical approach.
12) Ability to identify learning needs and direct learning
13) Being able to develop a positive attitude towards lifelong learning.
14) Ability to independently carry out an advanced study related to the field.
15) Ability to take responsibility individually and as a team member to solve unforeseen complex problems encountered in field-related applications.
16) Ability to plan and manage activities aimed at the development of the employees under his/her responsibility within the framework of a project.

Learning Activity and Teaching Methods

Anlatım
Bireysel çalışma ve ödevi
Course
Okuma
Seminar

Measurement and Evaluation Methods and Criteria

Yazılı Sınav (Açık uçlu sorular, çoktan seçmeli, doğru yanlış, eşleştirme, boşluk doldurma, sıralama)
Bireysel Proje
Sunum

Assessment & Grading

Semester Requirements Number of Activities Level of Contribution
Quizzes 2 % 10
Presentation 1 % 25
Midterms 1 % 25
Final 1 % 40
total % 100
PERCENTAGE OF SEMESTER WORK % 60
PERCENTAGE OF FINAL WORK % 40
total % 100

İş Yükü ve AKTS Kredisi Hesaplaması

Activities Number of Activities Aktiviteye Hazırlık Aktivitede Harçanan Süre Aktivite Gereksinimi İçin Süre Workload
Course Hours 15 3 45
Study Hours Out of Class 15 8 120
Presentations / Seminar 1 1 1
Quizzes 2 1 2
Midterms 1 1 1
Final 1 2 2
Total Workload 171