CIRCUIT THEORY I
- Course
- EEE202 - CIRCUIT THEORY I
- Department
- Electrical - Electronic Engineering - English - Master
- Course Type
- Scientific Preparation
- Status
- Required
- Language
- English
- Credit
- 0
- ECTS
- 0
- T+P+L
- 0 + 0 + 0
- Course Coordinator(s)
- Asst. Prof. Dr. Mehmet ŞENOL
- Prerequisite
- -
- Keywords
- -
Course Description
-
CIRCUIT THEORY I
Evaluation Tools (Active Term)
| Item | Type | Weight (%) |
|---|---|---|
| Mid-Term Exam | Midterm | 35 |
| Final Exam | Final | 45 |
| Project | Project | 10 |
| Laboratory | Assignment | 10 |
| Total | 100 | |
Course outcomes
- 01 To be able to Identify linear systems and represent those systems in schematic form
- 02 To be able to Apply Kirchhoff's current and voltage laws and Ohm's law to circuit problems
- 03 To be able to Simplify circuits using series and parallel equivalents and using Thevenin and Norton equivalents
- 04 To be able to Perform node and loop analyses and set these up in standard matrix format
- 05 To be able to Identify and model first and second order electric systems involving capacitors and inductors
- 06 To be able to Predict the transient behavior of first and second order circuits
Course Syllabus
| Week | Topic |
|---|---|
| Week 1 | Introduction, basic concepts in electronics, Kirchoff's Voltage and Current Laws |
| Week 2 | Tellegen's Theorem, power and energy, voltage sources, resistive circuits ohms law |
| Week 3 | Resistive ciruits, parallel resistances and resistive networks, voltage and current dividers |
| Week 4 | Graphical Analysis of the circuit properties |
| Week 5 | Resistive ciruits, parallel resistances and resistive networks, voltage and current dividers |
| Week 6 | Nodal Analysis |
| Week 7 | Midterms |
| Week 8 | Mesh Analysis |
| Week 9 | Circuit Theorems, Linearity Property,Superposition,Source Transformation |
| Week 10 | Resistive Circuits, thevenin equivalent, norton equivalent circuits, source transformation, maximum power transfer |
| Week 11 | Capacitors |
| Week 12 | Inductors |
| Week 13 | Inductance and Capacitance, steady state and transient analysis |
| Week 14 | Revision |
| Week 15 | - |
Reference Books & Course Materials
- 01 Electrical Engineering Principles and Applications, 3rd Edition, by Allan R. Hambley, Pearson Education 2005.
- 02 Electronics for Computer Technology, Terrell, Thomson Delmar Learning, 2003
- 03 Fundamentals of Electric Circuits (Third Edition), C. K. Alexander, M. N. O. Sadiku, McGraw Hill, 2007
- 04 Electric Circuits Fundamentals, 6th Edition, by Thomas L. Floyd, Pearson Education 2004.
Learning Outcomes
- L01 To be able to Identify linear systems and represent those systems in schematic form
- L02 To be able to Apply Kirchhoff's current and voltage laws and Ohm's law to circuit problems
- L03 To be able to Simplify circuits using series and parallel equivalents and using Thevenin and Norton equivalents
- L04 To be able to Perform node and loop analyses and set these up in standard matrix format
- L05 To be able to Identify and model first and second order electric systems involving capacitors and inductors
- L06 To be able to Predict the transient behavior of first and second order circuits
Program Outcomes
No program outcomes have been defined.
Po-Lo Matrix
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