Title
Ultimate Electrical Machines for Electrical Engineering
Learn about various electrical machines such as transformers, DC, synchronous, and induction machines from A to Z

What you will learn
Understand the importance of transformers
Understand why are the transformers considered the backbone of Power System
Understand the importance of iron core
Learn about the magnetic circuit represented by the core
Understand the construction of the windings in transformer and how they are put inside the core
Classify the windings according to different categories
Understand the function of insulating material and transformer oil
Realize the Importance of the Conservator in Transformer
Understand how Breather Remove the moisture and Why?
Realize how Important the Bushings for Human Safety
Understand the Importance of Tap changer and its effect on Load Variation
Realize the Benefit of Cooling Tubes for Oil
Understand how Important is the Buchholz Relay in Transformer
Realize benefit of the Explosion Vents to protect Transformer from Explosion.
Differentiate between Different Methods of Cooling of Transformer and Their Corresponding Power Rating
Understand the Different Types of Transformers as Power and Distribution Transformers
Understand the Difference between Single Phase Core and Shell Type Transformers
Understand the Difference between Three Phase Core and Shell Type Transformersβ
Compare between the Shell Type and Core Type Transformers
Understand the Theory of Operation of Transformer
Differentiate between Ideal and Non Ideal Transformers
Realize the Effect of Loading on Transformer
Understand the Transformer Regulation and Efficiency
Learn about Different Losses occurring in Transformer
Understand the Meaning of Transformer Rating
Understand the Voltage relation in Transformer
Differentiate between Approximate and Exact Equivalent Circuits of Transformer
Understand the Concept of Referring in Transformer
Learn Solved Example on Transformer
Understand the Importance of the Magnetic circuit and its application like Transformer.
Learn about the difference between Linear and non Linear Materials .
Understand the Important Definitions of Magnetic Circuits.
learn about the Flux Linkage and Reluctance.
Understand the Analogy between the Magnetic and Electric Circuits
learn about Induced EMF and Current.
Solve Examples on the Magnetic Circuit.
Understand the Fringing Effect.
Use Ampere Right Hand Rule or screw Rule.
Importance and construction of DC machines.
Armature Winding And EMF Equation.
Separately Excited DC Machine.
Shunt And Series DC Machines.
Types And Applications Of Compound DC Motors.
Torque-Speed Characteristics And Speed Control Of Separately Excited DC Motor.
Torque-Speed Characteristics Of Series DC Motor.
Starting Of DC Machine.
Losses In DC Machines.
Dozens Of Solved Examples On All Types Of DC Machines.
Construction And Principle Of Operation Of Synchronous Generator.
Principle Of Operation Of Synchronous Motor.
Equivalent Circuit And Phasor Diagram Of Non Salient Synchronous Machine.
Equivalent Circuit And Phasor Diagram Of Salient Synchronous Machine.
Parallel Operation Of Two Generators.
Synchronization Of Machine With Grid.
Dozens Of Solved Examples On Synchronous Machines Salient And Non Salient.
Construction and theory of operation of induction machines
Equivalent circuit and power flow in induction motor
Torque-Speed Characteristics Of Induction Motor
Methods of Speed control of induction motor
Methods of starting induction motor
Principle Of Operation Of Doubly Fed Induction Generator
Self Excited Induction Generator
Dozens Of Solved Examples On Induction Machines
Modeling of the DC machine in a no-load case using Simulink in MATLAB
Modeling of the DC machine in presence of load torque using Simulink in MATLAB
Simulating the DC machine using a power library from Simulink in MATLAB
Simulation of induction motor using Simulink in MATLAB
Simulation of the synchronous machine connected to a small power system
Overview on the PLC hardware configuration
Overview on types of inputs and outputs in PLC
Advantages of using PLC over classic control
Overview on different PLC programming languages
Discuss the important symbols in PLC
Definition of PLC scan cycle
Usage of markers in PLC
Understand types of timers and counters in PLC and how to use them
Do tasks in batch simulator
Do tasks in silo simulator
Do tasks in door simulator
Do tasks in I/O simulator
Why take this course?
π Unlock the Secrets of Electrical Machines with Ahmed Mahdy at Khadija Academy! π
Ultimate Electrical Machines Course Bundle for Complete Beginners
Are you ready to dive into the world of electrical machines without any prior knowledge? Look no further! Our comprehensive course bundle, "Ultimate Electrical Machines" by Ahmed Mahdy at Khadija Academy, is tailored specifically for beginners. π
What's Included in the Course Bundle:
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Magnetic Circuits Course: Dive into the fundamental concepts of magnetic circuits with a wealth of solved examples to guide you through. π§β¨
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Transformers Course: Explore the construction, importance, and workings of electrical transformers, including an in-depth look at three-phase transformers and their components. ππ
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DC Machines Course: Uncover the mysteries behind different types of DC electrical machines such as separately excited, shunt, and series motors and generators. β‘π
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Synchronous Machines Course: Grasp the operational principles of both salient and non-salient synchronous machines and understand their unique properties. β²οΈπΌ
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Induction Machines Course: Learn how induction generators and motors function, including starting methods and speed control techniques. πΊπ½
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Electrical Machines MATLAB Course: Gain the ability to simulate electrical machines within MATLAB Simulink, regardless of your previous experience with the software. ππ©βπ»
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ETAP Course: Master the art of simulating and analyzing electrical systems in ETAP, performing crucial analyses like voltage drop, short circuit, and more. ποΈβ«
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LogixPro PLC Simulator Course: Step into the world of PLC programming with hands-on, engaging simulations using LogixPro, ensuring a solid grasp of PLC basics. π€π§
β¨ Bonus Gift! β¨
Upon enrolling in the course, you'll receive a set of comprehensive slides for each topic. These slides are perfect for those who wish to have the materials or as a revision tool for themselves.
- 45 Pages of Magnetic Circuits Slides
- 161 Pages of Electrical Transformers Slides
- 180 Pages of DC Machines Slides
- 62 Pages of Induction Machines Slides
- 57 Pages of Synchronous Machines Slides
Why Choose This Course Bundle?
This bundle is designed to be your one-stop solution for gaining a deep understanding of electrical machines, ETAP, and PLC. With step-by-step lessons and many solved examples, you'll find the learning process both enlightening and enjoyable. π―π«
Whether you're a student, an engineer, or someone curious about electrical engineering, this course bundle will equip you with the knowledge and tools you need to excel in your field. Take the step towards mastering electrical machines, ETAP, and PLC with confidence! ππ
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Our review
Course Review for "Introduction to Electrical Machines and Power Systems"
Overview: The course "Introduction to Electrical Machines and Power Systems" has received an overall rating of 4.50 from recent reviews. The course is highly informative, with Mr. Ahmad being commended for his knowledge in the field and for being friendly and approachable. Students appreciate the detailed coverage of topics, particularly on motors and transformers.
Pros:
- Expertise: Mr. Ahmad is acknowledged as having a deep understanding of the subject matter.
- Content Coverage: The course provides a comprehensive overview of electrical machines, power systems, and transformers.
- Engagement: The material presented is engaging and informative, with practical examples that help apply theoretical knowledge.
- Value for Money: The course is appreciated for being offered at a great price point.
- Global Appeal: The content is recognized as being applicable to students from around the world, although some suggest including a section on unit conversions for international consistency.
- Improvement Suggestions: Positive feedback indicates that more solved examples on three-phase transformers and discussions on transformer protection relays would enhance the course's practicality. Additionally, more included calculations are recommended to deepen understanding.
- Use of Technology: There is a suggestion for incorporating simulations using SPICE for transformers, which could provide hands-on experience.
Cons:
- Clarity and Visibility: Some students find it difficult to understand the lecturer due to pronunciation issues and small text that can be hard to see. The use of a larger pointer is suggested to improve visibility.
- Language Proficiency: The course's effectiveness could be hindered for non-native English speakers, as clarity in English affects comprehension.
- Presentation Method: A few reviews mention the presentation style could be improved, specifically by using a specialized writing pad for clearer handwriting, and by avoiding "too much theory" at times.
- Multimedia Content: Some students express a desire for more videos, animations, or photos to complement the equations and provide a more visual understanding of the practical applications.
- Practical Application: The course is noted to be theoretical with less practical application focus, particularly in areas like determining transformer polarity and understanding the effects of changing parameters on motor behavior.
Student Feedback: The feedback from students indicates that while the course is very educational and well-structured, there is room for improvement in terms of presentation clarity and visual aids. The suggestions provided by students aim to enhance both the theoretical and practical aspects of the course, making it more accessible and applicable to a broader audience.
Conclusion: The "Introduction to Electrical Machines and Power Systems" course has been positively received for its informative content and Mr. Ahmad's knowledgeable presentation. To further improve, attention should be given to enhancing the clarity of pronunciation and visual presentation, incorporating more practical examples and simulations, and ensuring the course is accessible to English language learners. With these improvements, the course has the potential to become an even more valuable resource for students interested in electrical engineering and power systems.
Note: This review synthesizes feedback from multiple sources, reflecting a broad range of perspectives from various students. It is intended to guide future enhancements of the course for continuous improvement and student satisfaction.
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