PSY333 AdolescenceIstanbul Okan UniversityDegree Programs Genetics and Bioengineering (English)General Information For StudentsDiploma SupplementErasmus Policy StatementNational Qualifications
Genetics and Bioengineering (English)
Bachelor TR-NQF-HE: Level 6 QF-EHEA: First Cycle EQF-LLL: Level 6

General course introduction information

Course Code: PSY333
Course Name: Adolescence
Course Semester: Fall
Course Credits:
Theoretical Practical Credit ECTS
3 0 3 6
Language of instruction: TR-EN
Course Requisites:
Does the Course Require Work Experience?: No
Type of course: University Elective
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 AYŞEN YENİCİ
Course Lecturer(s): Ar.Gör. DİDEM KAYA DEMİR
Course Assistants:

Course Objective and Content

Course Objectives: This course aims at providing competence in developmental features of adolescence period and problems faced by adolescents.
Course Content: Within the framework of this course, topics such as developmental features of adolescence period and problems faced by adolescents are given place.

Learning Outcomes

The students who have succeeded in this course;
Learning Outcomes
1 - Knowledge
Theoretical - Conceptual
1) Lists the features of adolescence period.
2) Sets examples for developmental features of adolescence period.
3) Interprets theories which are effective in understanding adolescents.
4) Sets examples for problems faced in adolescence period.
5) Interprets an adolescent's relationship with individuals around him/her.
6) Explains the problems of socially disadvantageous adolescents.
7) Offers solutions to solve problems of socially disadvantageous adolescents.
8) Plans studies for the families of adolescents.
2 - Skills
Cognitive - Practical
3 - Competences
Communication and Social Competence
Learning Competence
Field Specific Competence
Competence to Work Independently and Take Responsibility

Lesson Plan

Week Subject Related Preparation
1) Definiton, importance and classification of adolescence period Lecturer's notes and lecture presentations
2) General features of adolescence period Lecturer's notes and lecture presentations
3) Bodily changes in adolescence period Lecturer's notes and lecture presentations
4) Ergenlik döneminde kişilik gelişimi Lecturer's notes and lecture presentations
5) Cognitive development in adolescence period Lecturer's notes and lecture presentations
6) Morality development in adolescence period Lecturer's notes and lecture presentations
7) Acqusition of sexual identity in adolescence period Lecturer's notes and lecture presentations
8) Midterm None
9) Sexuality and sexual harmony in adolescence period Lecturer's notes and lecture presentations
10) The effect of family in adolescence period Lecturer's notes and lecture presentations
11) The effect of friend groups in adolescence period Lecturer's notes and lecture presentations
12) Disabled adolescents Lecturer's notes and lecture presentations
13) Adolescents who need protection and adolescents who are drifting towards committing offense Lecturer's notes and lecture presentations
14) Final None

Sources

Course Notes / Textbooks: Lecturer's notes and lecture presentations
References: Bee, H. And Boyd, D. 2010. The Developing Child. Pearson Education, Boston.

Bilgin, M. , İnanç, B.Y. Ve Atıcı, M.K. 2008. Çocuk ve Ergen Gelişimi. Pegem Aakademi Yayınıcılık, Ankara.

Course-Program Learning Outcome Relationship

Learning Outcomes

1

2

3

4

5

6

7

8

Program Outcomes
1) Sufficient knowledge in mathematics, science and engineering related to their branches; and the ability to apply theoretical and practical knowledge in these areas to model and solve engineering problems.
2) The ability to identify, formulate, and solve complex engineering problems; selecting and applying appropriate analysis and modeling methods for this purpose.
3) The ability to design a complex system, process, device or product under realistic constraints and conditions to meet specific requirements; the ability to apply modern design methods for this purpose. (Realistic constraints and conditions include such issues as economy, environmental issues, sustainability, manufacturability, ethics, health, safety, social and political issues, according to the nature of design.)
4) Ability to develop, select and use modern techniques and tools necessary for engineering applications; ability to use information technologies effectively.
5) Ability to design experiments, conduct experiments, collect data, analyze and interpret results to examine engineering problems or discipline-specific research topics.
6) The ability to work effectively in disciplinary and multidisciplinary teams; individual work skill.
7) Effective communication skills in Turkish oral and written communication; at least one foreign language knowledge; ability to write effective reports and understand written reports, to prepare design and production reports, to make effective presentations, to give and receive clear and understandable instructions.
8) Awareness of the need for lifelong learning; access to knowledge, ability to follow developments in science and technology, and constant self-renewal.
9) Conform to ethical principles, and standards of professional and ethical responsibility; be informed about the standards used in engineering applications.
10) Awareness of applications in business, such as project management, risk management and change management; awareness of entrepreneurship, and innovation; information about sustainable development.
11) Information about the universal and social health, environmental and safety effects of engineering applications and the ways in which contemporary problems are reflected in the engineering field; awareness of the legal consequences of engineering solutions.

Course - Learning Outcome Relationship

No Effect 1 Lowest 2 Low 3 Average 4 High 5 Highest
           
Program Outcomes Level of Contribution
1) Sufficient knowledge in mathematics, science and engineering related to their branches; and the ability to apply theoretical and practical knowledge in these areas to model and solve engineering problems.
2) The ability to identify, formulate, and solve complex engineering problems; selecting and applying appropriate analysis and modeling methods for this purpose.
3) The ability to design a complex system, process, device or product under realistic constraints and conditions to meet specific requirements; the ability to apply modern design methods for this purpose. (Realistic constraints and conditions include such issues as economy, environmental issues, sustainability, manufacturability, ethics, health, safety, social and political issues, according to the nature of design.)
4) Ability to develop, select and use modern techniques and tools necessary for engineering applications; ability to use information technologies effectively.
5) Ability to design experiments, conduct experiments, collect data, analyze and interpret results to examine engineering problems or discipline-specific research topics.
6) The ability to work effectively in disciplinary and multidisciplinary teams; individual work skill.
7) Effective communication skills in Turkish oral and written communication; at least one foreign language knowledge; ability to write effective reports and understand written reports, to prepare design and production reports, to make effective presentations, to give and receive clear and understandable instructions.
8) Awareness of the need for lifelong learning; access to knowledge, ability to follow developments in science and technology, and constant self-renewal.
9) Conform to ethical principles, and standards of professional and ethical responsibility; be informed about the standards used in engineering applications.
10) Awareness of applications in business, such as project management, risk management and change management; awareness of entrepreneurship, and innovation; information about sustainable development.
11) Information about the universal and social health, environmental and safety effects of engineering applications and the ways in which contemporary problems are reflected in the engineering field; awareness of the legal consequences of engineering solutions.

Learning Activity and Teaching Methods

Expression
Brainstorming/ Six tihnking hats
Individual study and homework
Lesson
Homework
Report Writing

Assessment & Grading Methods and Criteria

Written Exam (Open-ended questions, multiple choice, true-false, matching, fill in the blanks, sequencing)
Individual Project

Assessment & Grading

Semester Requirements Number of Activities Level of Contribution
Quizzes 2 % 10
Midterms 1 % 40
Final 1 % 50
total % 100
PERCENTAGE OF SEMESTER WORK % 50
PERCENTAGE OF FINAL WORK % 50
total % 100

Workload and ECTS Credit Grading

Activities Number of Activities Duration (Hours) Workload
Course Hours 14 3 42
Quizzes 2 25 50
Midterms 1 40 40
Final 1 50 50
Total Workload 182