Ultimate Electric Circuits Masterclass for Beginners

Learn the Fundamentals of Electric Circuits from Scratch with Dozens of Examples

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This is the only course with everything you need to know about the basics of electric circuits for complete beginners without any previous knowledge.


This course starts with the basic concepts of electricity to the level you will be very familiar with circuits.

Throughout the course you will get:

✅ Basics concepts of electric circuits: This will help you understand the very basic definitions of electricity including voltage, current, power, and more.

✅ Basic laws of electric circuits: This part will teach you about the branches, nodes, KVL, KCL, Ohm's law, and Delta-Wye transformations.

✅ Methods of analysis: You will learn how to analyze electric circuits using nodal analysis and mesh analysis.

✅ Circuit theorems: In this part, you will learn more advanced circuit analysis techniques such as the superposition theorem, source transformation theorem, Thevenin theorem, Norton theorem, and maximum power transfer.

✅ Operational amplifiers: You will be introduced to operational amplifiers including inverting, non-inverting, summing, difference, and cascaded amplifiers. These amplifiers are helpful in inverting or amplification or adding or subtracting different input signals.

✅ Capacitors and inductors: These components are really important in the electrical system and other applications. You will find inductors as a representation of electrical machines and capacitors that can be used in power factor correction.

✅ First-order circuits: These circuits are composed of resistors and inductors or resistors and capacitors. We will understand how to analyze them in the free and forced responses.

✅ Basics of AC circuits: AC power or alternating power is the one which we have in our homes. We will learn about them and what is the difference between them and AC circuits.

✅ Analysis of AC circuits: In this part, we will start analyzing our AC circuits with the different theorems that had been discussed at the beginning of the course.

✅ Resonant circuits: In this part, we will discuss both series and parallel resonant circuits, these circuits have a crucial effect on electric circuits as well as have practical applications.

✅ Electric circuit simulations using MATLAB: We will learn the simulation of many electric circuits in the well-known simulation program MATLAB Simulink. This will be a fun part that will increase your knowledge about electric circuits.

All of these topics are in step-by-step lessons with many solved examples.

Bonus Gift:

⚡️ You will find also the slides for the Ultimate Electric Circuits Course Bundle for those who are interested in them or having them as a revision for themselves ⚡️

✅ 458 Pages of Electric Circuits Course Slides
✅ 95 Pages of Electrical Resonance Course Slides

Take this bundle if you've been looking for ONE COURSE BUNDLE with in-depth insight into the basics of electric circuits.


🌐 Multilingual Subtitles Available


English, Arabic (العربية), Hindi (हिन्दी), German (Deutsch), French (Français), Spanish (Español)
Need another language? Contact us—we’re happy to help!


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Course Curriculum



Student's Reviews

You will also be rewarded with a certificate of completion after completing the course bundle


Your Instructor


Khadija Academy
Khadija Academy

Khadija Academy was founded by engineer Ahmed Mahdy who is an electrical power engineer and researcher. He is also an electrical bestselling instructor teaching electrical engineering and has helped more than 90,000 students from 198 countries achieve career success with simple and easy courses in the last 9 years.

He also received the award for the best master's thesis in the Faculty of Engineering - Ain Shams University for 2022/2023 for his extraordinary research in the wave energy field.

Some of his published research works in the top electrical engineering journals worldwide:

1- Transient stability improvement of wave energy conversion systems connected to the power grid using anti-windup-coot optimization strategy - Energy Journal - Impact Factor of 9.0.

https://www.sciencedirect.com/science/article/abs/...

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.

https://ieeexplore.ieee.org/document/9772340


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.

https://www.sciencedirect.com/science/article/abs/...

4- State-of-the-Art of the most commonly adopted wave energy conversion systems - Ain Shams Engineering Journal - Impact Factor of 6.0.

https://www.sciencedirect.com/science/article/pii/...


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

https://www.mdpi.com/2504-3110/8/1/6


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.

https://doi.org/10.1016/j.asej.2024.102732


Frequently Asked Questions


When does the course start and finish?
The course starts now and never ends! It is a completely self-paced online course - you decide when you start and when you finish.
What if I am unhappy with the course?
We would never want you to be unhappy! If you are unsatisfied with your purchase, contact us in the first 7 days and we will give you a full refund.