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Course Unit Title Course Unit Code Type of Course Unit Level of Course Unit Year of Study Semester ECTS Credits
Alternating Current Circuit Analysis OMP116 Compulsory Associate degree 1 Spring 5

Name of Lecturer(s)

Prof. Dr. Ersin KAYAHAN
Associate Prof. Dr. Abdulhakim KARAKAYA
Associate Prof. Dr. Mustafa ÖZCAN
Assistant Prof. Dr. Kadir YILMAZ
Lecturer Şerafettin ARIKAN
Lecturer Şener DENİZ
Lecturer Engin KARAMAN
Lecturer Kenan KELEŞ
Lecturer Erkan KOCAKAYA
Lecturer Şakir KUZEY
Lecturer Remzi SÜERKAN
Lecturer Oğuz Mete ŞAŞMAZ
Lecturer Eylem YALÇIN
Lecturer Gülten YILMAZ
Lecturer Uğur YÜCEL

Learning Outcomes of the Course Unit

1) Recognize the basic principles of AC circuits
2) Comment on the operation of the resistance in AC circuits.
3) Use The Ohm's Law in AC circuits.
4) Comment on the operation of the capacitor circuits and analyze RC circuits.
5) Comment on the operation of the bobbin in AC circuits and analyze RL circuits.
6) Analyze the RLC circuits in AC circuits.
7) Use the circuit analyzing techniques in AC circuits.
8) Recognize the resonance circuits.

Program Competencies-Learning Outcomes Relation

  Program Competencies
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17
Learning Outcomes
1 High High No relation High No relation Low No relation No relation High High High High High High No relation No relation No relation
2 High Middle No relation High No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation
3 Low No relation No relation High No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation
4 High Middle No relation High No relation Low No relation No relation High No relation No relation No relation No relation No relation No relation No relation No relation
5 High Middle No relation High No relation Low No relation No relation High No relation No relation No relation No relation No relation No relation No relation No relation
6 Low No relation No relation High No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation
7 Low No relation No relation High No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation
8 High Middle No relation High No relation Low No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation

Mode of Delivery

Face to Face

Prerequisites and Co-Requisites

None

Recommended Optional Programme Components

There is not lesson.

Course Contents

In this lecture, students are provided with knowledge on capacitor and Bobbins, Alternative and Direct Current Concepts, Types of Alternative Signals, Frequency In The Alternative Signals, Period, Amplitude, Peak Value, Peak to Peak Value Concepts, Complex Numbers and Complex Mathematics (Addition, Subtraction, Multiplication, Division, etc. ..). Polar Form and Transformations, Resistance and Ohm's Law in AC Circuits, Samples, Capacitive Reactance, Inductive Reactance and Impedance Concepts, RC Circuit Analysis (Current, Voltage, Impedance Calculation), RL Circuit Analysis (Current, Voltage, Impedance ) and Samples, Kirchhoff's Current and Voltage Laws in an AC Circuit, Voltage Dividers and Current Dividers in AC Circuits. Power in AC Circuits, Superposition Theorem for RLC Circuits. The Method of Surrounding Current in RLC Circuits, Thevenin Method in RLC Circuits. Norton Method in RLC Circuits. Node Voltages Method for RLC Circuits, Series Resonant Circuits, Parallel Resonant Circuits.

Weekly Schedule

1) Condenser and Bobbin. Alternative and Direct Current Concepts. Types of Alternative Signals. In The Alternative Signal, Frequency, Period, Amplitude, Peak Value, Peak to Peak Value Concepts.
2) Complex Numbers and Complex Mathematics (Addition, Subtraction, Multiplication, Division, etc. ..). Polar Form and Transformation.
3) Resistance and Ohm's Law for AC Circuits. Examples. Capacitive Reactance, Inductive Reactance and Impedance Concepts.
4) RC Circuit Analysis (Current, Voltage, Impedance Calculation), and Examples.
5) RL Circuit Analysis (Current, Voltage, Impedance Calculation), and examples.
6) RLC Circuit Analysis (Current, Voltage, Impedance Calculation) and Examples. Kirchhoff's Current and Voltage Laws in an AC Circuit.
7) Voltage Dividers and Current Dividers in AC Circuits. Power in AC Circuits. Examples.
8) Midterm examination/Assessment
9) Superposition Theorem for RLC Circuit and Examples.
10) Superposition Theorem for RLC Circuit and Examples.
11) Thevenin Method for RLC Circuits and Examples.
12) Norton Method for RLC Circuits and Examples.
13) Node Voltages Method for RLC Circuits and Examples.
14) Series Resonant Circuits and Examples.
15) Parallel Resonant Circuits and Examples.
16) Final examination

Recommended or Required Reading

1- Selek H. S., AC Devre Analizi, Seçkin Yayıncılık, Ankara, 2008 ISBN: 978-975-02-0787-7
2- Özbey Ş., Elektrik Devre Analizi 1,Seçkin Yayıncılık, Ankara, 2010 ISBN: 978-975-02-1154-6
3- Boylestad L.Robert, Introductory Circuit Analysis, Charles E.Merrill Publishing Company, USA, 1977

Planned Learning Activities and Teaching Methods

1) Lecture
2) Question-Answer
3) Drill and Practice
4) Problem Solving


Assessment Methods and Criteria

Contribution of Semester Studies to Course Grade

30%

 

Number

Percentage

Semester Studies

Midterm Examination

1

90%

Practices

1

10%

 

Contribution of Final Examination to Course Grade

70%

Total

100%

Language of Instruction

Turkish

Work Placement(s)

Not Required