Complete Electric Circuits Course for Electrical Engineering
Learn the fundamentals of electric circuits from scratch with dozens of examples for electrical engineering students
Teaching and Academics ,Engineering,Electrical Engineering
Lectures -137
Duration -10 hours
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Course Description
Welcome To Our course, "Complete Electric Circuits Course For Electrical Engineering"
This course is designed for absolute beginners who have zero knowledge about electric circuits, I start from zero until you understand all the fundamentals with hundreds of examples !!
You will learn in this course:
- Fundamentals of electric DC circuits.
- SI units or International Units.
- Definition of the electric charge.
- Definition of the electric current.
- Definition of the electric voltage.
- Definition of electric power.
- Definition of electric energy.
- Differences between dependent and independent sources.
- Applications of DC Circuits.
- Know the principle of the TV picture tube or CRT.
- Know about the electricity bill calculations.
- Basic Laws of Electricity.
- Understand Ohm's law.
- Differences between an Open Circuit and a Short Circuit.
- Difference between Fixed and Variable Resistance.
- Definition of Conductance.
- Know the difference between series and parallel connections.
- Definition of the Nodes, Branches, and loops in an Electric circuit.
- Definition of Kirchhoff's laws.
- Definition of Kirchhoff's current law.
- Definition of Kirchhoff voltage law.
- Series resistor and voltage division.
- Know parallel resistors and current division.
- Wye-Delta transformations and vice-versa.
- Understand Applications such as Lightning Systems.
- Understand Nodal analysis without a voltage source.
- Understand Nodal analysis with voltage sources.
- Understand the supernode.
- Understand Mesh analysis without a current Source.
- Understand Mesh analysis with current Sources.
- Understand the super mesh.
- Compare between Nodal and Mesh analysis.
- Understand applications as DC transistor circuits.
- Understand the meaning of the linearity property.
- Use the Superposition theorem.
- Understand Thevenin's theorem.
- Understand Norton's theorem.
- Maximum power transfer.
- Understand the source transformation.
- Understand application as resistance measurement.
- Understand the various types of operational amplifiers.
- Understand ideal op amp, inverting amplifier, and non-inverting amplifier.
- Understand the summing op-amp circuit.
- Understand the difference between op-amp circuits.
- Understand cascaded op-amp circuit.
- Know the applications of op-amps like Digital-to-Analog converter.
- Know the applications of op-amps, like instrumentation amplifiers.
- Know what is a capacitor.
- Understand how to simplify series capacitors.
- Understand how to simplify parallel capacitors.
- Know what is an inductor.
- Understand practical capacitors and practical inductors.
- Understand how to simplify series inductors.
- Understand how to simplify parallel inductors.
- Know how to get energy stored in the capacitor.
- Know how to get energy stored in the inductor.
- Know the applications of capacitors and inductors as integrators.
- Know the applications of capacitors and inductors as differentiators.
Goals
- Basic concepts of electricity as electric charge, current, voltage, and more.
- Basic elements and their equivalent circuits, such as resistance, inductance, and capacitors.
- Basic laws such as KCL, KVL, Ohm's law, and Delta-Wye transformations.
- Methods of analysis include nodal and mesh analysis.
- Circuit theorems such as Norton, Thevenin, source transformation, and maximum power transfer.
- Different operational amplifiers, such as inverting, non-inverting, summing, etc.
Prerequisites
- Internet Connection Only.
- Desire for Knowledge.

Curriculum
Check out the detailed breakdown of what’s inside the course
Basic Concepts
20 Lectures
-
What Is An Electric Circuit ? 02:21 02:21
-
System of Units 06:47 06:47
-
Reference Book
-
What Is An Electric Charge ? 05:10 05:10
-
What Is An Electric Current ? 08:03 08:03
-
Example 1 01:09 01:09
-
Example 2 02:21 02:21
-
Example 3 02:21 02:21
-
What Is Voltage ? 07:21 07:21
-
What Is Power ? 05:52 05:52
-
What Is Energy ? 03:39 03:39
-
Example 4 02:33 02:33
-
Example 5 02:20 02:20
-
Dependent and Independent Sources 07:21 07:21
-
Example 6 Part 1 03:37 03:37
-
Example 6 Part 2 01:22 01:22
-
Application 1 Cathode Ray Tube 03:44 03:44
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Example 7 03:54 03:54
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Application 2 Electricity Bills 01:57 01:57
-
Example 8 02:50 02:50
Basic Laws
27 Lectures

Methods of Analysis
15 Lectures

Circuit Theorems
21 Lectures

Operational Amplifiers
23 Lectures

Capacitors and Inductors
28 Lectures

First Order Circuits
2 Lectures

Instructor Details

Ahmed Mahdy
About me
I am Ahmed Mahdy an electrical power engineer, researcher, and the founder of Khadija Academy. I am also an electrical bestselling instructor at more than 30 platforms, teaching electrical engineering. I have helped over 80,000 students from 196 countries achieve career success with simple and easy courses in the last 8 years. In addition, I have a YouTube educational engineering channel called" Khadija Academy", where I regularly post videos related to electrical engineering. In 2018, I was nominated among the top 10% of instructors on Tutorialspoint, besides currently ranking among the top instructors in the engineering sector of Tutorialspoin.
I have received the award for the best master's thesis in the Faculty of Engineering - Ain Shams University for 2022/2023.
Some of my published research works in the top electrical engineering journals worldwide:
1- Transient stability improvement of wave energy conversion systems connected to power grid using anti-windup-coot optimization strategy - Energy Journal - Impact Factor of 9.0.
2- Nonlinear Modeling and Real-Time Simulation of a Grid-Connected AWS Wave Energy Conversion System - IEEE Transactions on Sustainable Energy - Impact Factor of 8.8.
3- Modeling and optimal operation of hybrid wave energy and PV system feeding supercharging stations based on golden jackal optimal control strategy - Energy Journal - Impact Factor of 9.0.
4- State-of-the-Art of the most commonly adopted wave energy conversion systems - Ain Shams Engineering Journal - Impact Factor of 6.0.
5- Optimal Design of Fractional-Order PID Controllers for a Nonlinear AWS Wave Energy Converter Using Hybrid Jellyfish Search and Particle Swarm Optimization - Fractal and Fractional - Impact Factor of 5.4
6- Dynamic performance enhancement of nonlinear AWS wave energy systems based on optimal super-twisting control strategy - Ain Shams Engineering Journal - Impact Factor of 6.0.
In every one of my Tutorialspoincourses, you'll see that I am always available and always offer you support through each course. I will join your success and help you through any obstacles.
You'll notice that my courses get many 5-star ratings & reviews and my student satisfaction ratings also reflect this.
In the many positive course reviews, my courses get, most people like the Way I explain everything and the encouraging teaching style that I convey as well as how I get right to the point and walk you, step-by-step through Complex Ideas.
(You'll find my courses below this bio - and all of my courses have at least 10 minutes of free previews available to you, so you can quickly determine the courses that are right for you)
My courses can be watched 24/7 wherever you are.
You can also view them on mobile devices with the Tutorialspoinmobile app.
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