Overview
Join our comprehensive course and unlock boundless opportunities for personal and professional growth with our meticulously crafted comprehensive course. If you yearn for precise knowledge that not only enriches your personal and professional life but also empowers you to excel and stand out, then look no further.Â
Our in-depth course provides a learning experience meticulously designed to empower individuals from diverse backgrounds. It also provides exclusive and interactive learning materials and is developed with the utmost dedication to help you bring out the best version of yourself. During the process of learning from our course, you will be able to recognise and monitor your growth as well as reflect on your experiences.
Whether you’re a professional seeking to elevate your career prospects, a curious student hungry for knowledge expansion, or an aspiring enthusiast pursuing a newfound passion, this course is tailor-made to cater to your unique needs.
So, don’t delay any further and enrol now!
Learning Outcome
By the end of this course, you will be able to:
- Develop a comprehensive understanding of course-related concepts and principles.
- Apply critical thinking and problem-solving skills to overcome any possible challenges.
- Foster a commitment to continuous learning and personal growth.
- Improve communication skills for effective expression and discussion of course-related ideas.
- Engage with a variety of information and enhance information literacy skills.
- Collaborate and work efficiently in team-based projects and discussions, where applicable.
- Utilise technology and digital tools effectively to support course-related tasks and objectives.
- Embrace ethical conduct and responsibility in professional settings.
- Develop a growth mindset and adaptability, embracing lifelong learning and skill enhancement.
Who Is This Course For?
If you contemplate a suitable niche or want to experience the primary to advanced level knowledge of this industry, then this course is for you. Regardless of your background, you can participate and enhance your CV.
Certificates
You will earn a CPD QS certificate upon completing this course. It will not only serve as a concrete validation of the knowledge and skills acquired during the course but it will also enhance your professional credibility and open doors to new opportunities and career advancement.
Certificate of Completion
Digital Certificate
Price: £4.99
The digital Certificate of Completion will be provided after learners complete the course.
Hardcopy Certificate of Completion
Hard Copy Certificate
Price: £9.99
The hardcopy certificate for all individual titles can be received by paying £9.99 each, for students living inside the UK.
International Students
For international orders, the total fee is £14.99 (£9.99 Certification Fee + £5 postal charge) for each individual titles.
Requirements
This course has no set requirements for learning. All you need is a smart device, a reliable internet connection, and a basic command of English and you’re good to go!
Career Path
This career-friendly course will deepen your insights into the UK job market and help you secure your dream job with time. You will be able to experience noticeable development in your current career.Â
It’s time to unlock limitless opportunities.
Course Curriculum
| Unit 1: Introduction to Electric Machines | |||
| Module 1- Introduction to Electric Machines | 00:03:00 | ||
| Module 2- Types of Electric Machines and Principle of Electrical Generation | 00:09:00 | ||
| Unit 2: DC Machines | |||
| Module 1- Importance and Construction of DC Machines | 00:26:00 | ||
| Module 2- Armature Winding and EMF Equation | 00:40:00 | ||
| Module 3-Solved Example 1 | 00:05:00 | ||
| Module 4-Solved Example 2 | 00:04:00 | ||
| Module 5-Solved Example 3 | 00:07:00 | ||
| Module 6-Solved Example 4 | 00:06:00 | ||
| Module 7-Separately Excited DC Machine | 00:21:00 | ||
| Module 8-Shunt and Series DC Machines | 00:25:00 | ||
| Module 9-Solved Example 1 on Separately Excited DC Machine | 00:07:00 | ||
| Module 10-Solved Example 2 on Separately Excited DC Machine | 00:07:00 | ||
| Module 11-Solved Example 3 on Shunt Generator | 00:04:00 | ||
| Module 12-Solved Example 4 on Shunt Generator | 00:07:00 | ||
| Module 13-Solved Example 5 on Series DC Generator | 00:06:00 | ||
| Module 14-Types and Applications of Compound DC Motors | 00:07:00 | ||
| Module 15- Torque-Speed Characteristics and Speed Control of Separately Excited DC Motor | 00:33:00 | ||
| Module 16- Torque-Speed Characteristics of Series DC Motor | 00:08:00 | ||
| Module 17-Solved Example 1 on Speed Control | 00:08:00 | ||
| Module 18-Solved Example 2 on Speed Control | 00:06:00 | ||
| Module 19- Starting of DC Machine | 00:14:00 | ||
| Module 20- Armature Reaction in DC Machines | 00:10:00 | ||
| Module 21-Losses in DC Machines | 00:04:00 | ||
| Unit 3: Construction of Transformers | |||
| Module 1- What is a Transformer | 00:02:00 | ||
| Module 2- Importance of Transformer | 00:04:00 | ||
| Module 3-Iron Core of Transformer | 00:04:00 | ||
| Module 4- Magnetic Circuit Inside Transformer | 00:05:00 | ||
| Module 5- Windings of Transformer | 00:03:00 | ||
| Module 6- Why are Windings Made of Copper | 00:01:00 | ||
| Module 7- Classification of Windings | 00:05:00 | ||
| Module 8- Insulating Material and Transformer Oil | 00:02:00 | ||
| Module 9- Conservator of Transformer | 00:03:00 | ||
| Module 10- Breather of Transformer | 00:04:00 | ||
| Module 11- Bushings of Transformer | 00:04:00 | ||
| Module 12- Tap Changer of Transformer | 00:03:00 | ||
| Module 13- Cooling Tubes of Transformer | 00:01:00 | ||
| Module 14- Buchholz Relay of Transformer | 00:02:00 | ||
| Module 15- Explosion Vent | 00:02:00 | ||
| Module 16- Methods of Cooling | 00:03:00 | ||
| Module 17-Types of Transformers | 00:03:00 | ||
| Module 18- Power Transformer and Distribution Transformer | 00:05:00 | ||
| Module 19- Single Phase Core Type Transformer | 00:04:00 | ||
| Module 20-Single Phase Shell Type Transformer | 00:05:00 | ||
| Module 21- 3 Phase Core Type | 00:02:00 | ||
| Module 22- 3 Phase Shell Type | 00:01:00 | ||
| Module 23- Comparison between Shell and Core CSA | 00:01:00 | ||
| Module 24- Comparison between Shell and Core Type | 00:01:00 | ||
| Module 25- Notes | 00:03:00 | ||
| Module 26-Video Explaining The Components in 3D and Real Life | 00:05:00 | ||
| Unit 4: Fundamentals of Magnetic Circuits | |||
| Module 1- Introduction to Magnetic Circuits | 00:02:00 | ||
| Module 2- Induced Emf and Current | 00:04:00 | ||
| Module 3- Ampere Right Hand Rule | 00:04:00 | ||
| Module 4- Magnetic Circuit and Important Definitions | 00:06:00 | ||
| Module 5- Linear and Non Linear Materials | 00:03:00 | ||
| Module 6-Flux Linkage and Reluctance | 00:04:00 | ||
| Module 7- Analogy between Electric and Magnetic Circuits | 00:06:00 | ||
| Module 8- Fringing Effect | 00:02:00 | ||
| Module 9- Example 1 Magnetic Circuits | 00:07:00 | ||
| Module 10- Example 2 | 00:03:00 | ||
| Module 11- Example 3 | 00:06:00 | ||
| Module 12- Application on Magnetic Circuit – Transformers | 00:04:00 | ||
| Unit 5: Theoretical Part on Transformers | |||
| Module 1- Introduction to Transformers | 00:02:00 | ||
| Module 2- Construction of Transformer | 00:02:00 | ||
| Module 3-Theory of Operation | 00:04:00 | ||
| Module 4- Ideal Transformer | 00:05:00 | ||
| Module 5-Non Ideal Transformer | 00:02:00 | ||
| Module 6- Effect of Loading on Transformer | 00:03:00 | ||
| Module 7- Transformer Regulation | 00:03:00 | ||
| Module 8- Transformer Losses | 00:03:00 | ||
| Module 9- Transformer Efficiency | 00:05:00 | ||
| Module 10- Transformer Rating | 00:02:00 | ||
| Module 11- Question 1 | 00:01:00 | ||
| Module 12- Question 2 | 00:02:00 | ||
| Module 13- Question 3 | 00:01:00 | ||
| Module 14- Example 1 | 00:01:00 | ||
| Module 15- Voltage Relation of Transformer | 00:04:00 | ||
| Module 16- Transformer Exact Equivalent Circuit | 00:06:00 | ||
| Module 17- Concept of Refereeing | 00:04:00 | ||
| Module 18- Approximate Equivalent Circuit | 00:02:00 | ||
| Unit 6: Synchronous Machines | |||
| Module 1- Construction and Principle of Operation of Synchronous Generator | 00:29:00 | ||
| Module 2- Principle of Operation of Synchronous Motor | 00:24:00 | ||
| Module 3- Equivalent Circuit and Phasor Diagram of Non Salient Synchronous Machine | 00:29:00 | ||
| Module 4-Solved Example 1 on Non Salient Machine | 00:05:00 | ||
| Module 5-Solved Example 2 on Non Salient Machine | 00:11:00 | ||
| Module 6-Solved Example 3 on Non Salient Machine | 00:07:00 | ||
| Module 7- Solved Example 4 on Non Salient Machine | 00:04:00 | ||
| Module 8-Solved Example 5 on Non Salient Machine | 00:07:00 | ||
| Module 9-Solved Example 6 on Non Salient Machine | 00:03:00 | ||
| Module 10- Equivalent Circuit and Phasor Diagram of Salient Synchronous Machine | 00:39:00 | ||
| Module 11-Solved Example 1 on Salient Machine | 00:09:00 | ||
| Module 12- Solved Example 2 on Salient Machine | 00:05:00 | ||
| Module 13-Solved Example 3 on Salient Machine | 00:10:00 | ||
| Module 14- Parallel Operation of Two Generators | 00:17:00 | ||
| Module 15- Synchronization of Machine with Grid | 00:10:00 | ||
| Unit 7: Induction Machines | |||
| Module 1- Construction and Theory of Operation of Induction Machines | 00:27:00 | ||
| Module 2- Equivalent Circuit and Power Flow in Induction Motor | 00:23:00 | ||
| Module 3- Torque-Speed Characteristics of Induction Motor | 00:20:00 | ||
| Module 4- Solved Example 1 on Induction Motor | 00:08:00 | ||
| Module 5-Solved Example 2 on Induction Motor | 00:06:00 | ||
| Module 6-Solved Example 3 on Induction Motor | 00:06:00 | ||
| Module 7-Solved Example 4 on Induction Motor | 00:18:00 | ||
| Module 8-Solved Example 5 on Induction Motor | 00:13:00 | ||
| Module 9- Methods of Speed Control of Induction Motor | 00:27:00 | ||
| Module 10- Methods of Starting of Induction Motor | 00:21:00 | ||
| Module 11-Solved Example on Motor Starter | 00:15:00 | ||
| Module 12- Principle of Operation of Doubly Fed Induction Generator | 00:11:00 | ||
| Module 13-Self Excited Induction Generator | 00:08:00 | ||
| Assignment | |||
| Assignment – Electrical Machines for Electrical Engineering | 00:00:00 | ||

