Course Information

Course Information
Course Title Code Language Type Semester L+U Hour Credits ECTS
- KNT1101 Turkish Compulsory 1. Semester 3 + 1 4.0 4.0
Prerequisite Courses
Course Level Associate
Mode of delivery Face to face, Presentation of the Topics,Laboratoary Applications
Course Coordinator
Instructor(s) Öğr. Gör. Aysun ŞAHİN (Güz)
Goals To understand the basic concepts and theories related to the course Scope of electric circuits , analyzed under the direct current electrical circuits and aimed to learn methods of resolution.
Course Content - Basic concepts ( current, voltage , resistance, electromotive force, voltage and current sources) , electrical energy , work and power concepts, Ohm's Law, Kirchoff's laws, circuit analysis methods ( arm movements, superposition , Thevenin and Norton 's Theorem ) , inductors , capacitors , first-degree circuit solutions .
Learning Outcomes
# Öğrenme Kazanımı
1
2
3
4
5
Lesson Plan (Weekly Topics)
Week Topics/Applications Method
1. Week Direct current basic concepts Electric charge, conductor-insulator, current, voltage, resistance, power and energy
2. Week Direct current basic concepts Electric charge, conductor-insulator, current, voltage, resistance, power and energy
3. Week Ohm's Law and Its Application to Circuits
4. Week Direct Current Circuits connected in Series and Parallel
5. Week Kirchoff Law,
6. Week Resource Conversions
7. Week Circuit analysis methods (Environmental Currents Method)
8. Week Circuit analysis methods (Node voltage theorems)
9. Week Circuit analysis methods (Superposition theorem)
10. Week Circuit analysis methods (Norton theorem) Circuit analysis methods (Thevenin theorem)
11. Week Power and energy in Direct Current Circuit analysis methods sample question solutions
12. Week Circuit analysis methods sample question solutions
13. Week Storage elements in Direct Current circuits
14. Week Power and energy in direct current circuits
*Midterm and final exam dates are not specified in the 14-week course operation plan. Midterm and final exam dates are held on the dates specified in the academic calendar with the decision of the University Senate.
The Matrix for Course & Program Learning Outcomes
No Program Requirements Level of Contribution
1 2 3 4 5
1 In secondary education has been gained professional qualifications in the field of application on a supported knowledge / skills should be with
2 Control and Automation Technology  should be able to use the acquired theoretical knowledge related to
3 Control and Automation Technology  related to practical applications of theoretical knowledge, hand and / or intellectual skills Able to use
4 Independently In The Control and Automation Technology should be able to apply what they have learned
5 Control and Automation Technology related studies unforeseen problems must be able to identify and find solutions
Relations with Education Attainment Program Course Competencies
Program Requirements DK1
PY1 4
PY2 4
PY3 5
PY4 3
PY5 4
Recommended Sources
Ders Kitabı veya Notu Ders Kitabı veya Ders Notu bulunmamaktadır.
Diğer Kaynaklar
  • [1] Doğru akım devreleri ve Problem Çözümleri, Mustafa Yağımlı, Beta Yayınevi,
  • [2] Öğr. Gör. Hasan Selçuk SELEK, Doğru Akım Devre Analizi, Seçkin Yayınları.
Evaluation Method
Güz Dönemi
Responsible Personnel Grup Evaluation Method Percentage
Öğr. Gör. Aysun ŞAHİN Vize 40.00
Öğr. Gör. Aysun ŞAHİN Final 60.00
Toplam 100.00
ECTS credits and course workload
ECTS credits and course workload Quantity Duration (Hour) Total Workload (Hour)
Ders İçi
Class Hours 14 4 56
Ders Dışı
Preparation, After Class Study 15 1 15
Research 10 1 10
Other Activities 15 1 15
Sınavlar
Midterm 1 1 1 1
Homework 1 10 1 10
Final 1 1 1
Total Workload 108
*AKTS = (Total Workload) / 25,5 ECTS Credit of the Course 4.0