Electric Vehicles Comprehensive Course
Welcome to our Electric Vehicle Comprehensive Online Video Course – your passport to mastering the world of electric mobility! This meticulously crafted course, featuring 10 hours of video content across 86 lectures, is designed to not only deepen your understanding of electric vehicles (EVs) but also to enhance your career prospects in this rapidly evolving industry.
Course Benefits:
1. Career Advancement: Whether you’re looking to break into the electric vehicle industry or aiming to upskill within it, our course provides the knowledge and expertise essential for success. Stay ahead of the curve and make yourself a valuable asset in this dynamic field.
2. Expert-Led Instruction: Learn from industry experts who bring real-world experience to the virtual classroom. Gain practical insights that will set you apart in job interviews and professional settings.
3. Supporting Materials: Complement your learning with downloadable PDF files accompanying many lecture. These materials serve as handy references, aiding you in mastering key concepts and providing valuable resources for your career in the electric vehicle sector.
4. Practice Assignments: Hone your skills through hands-on practice with our meticulously designed assignments. These real-world scenarios will empower you to confidently apply your knowledge in professional settings.
5. Stay Current: Our cutting-edge curriculum ensures you are well-versed in the latest advancements and industry trends. Equip yourself with the knowledge needed to thrive in an industry at the forefront of technological innovation.
6. Lifetime Access: Benefit from lifetime access to the course material, allowing you to revisit lectures and stay updated on industry developments throughout your career. Enroll now and accelerate your journey towards a rewarding career in the electric vehicle industry or elevate your skills to new heights within this transformative field.
What’s not in this course
One course can change your life
Your success starts here!
Course Curriculum
Section 1 Course introduction
-
1.1 Course introduction
02:53
Section 2 Introduction
-
2.1 History of electric vehicles
04:41 -
2.2 Introduction to electric vehicles
03:56
Section 3 Lithium to lithium ion batteries
-
3.1 Lithium demand and resouces
21:08 -
3.2 Lithium mining and economics
14:23 -
3.3 Lithium extraction processes and comparison
20:07 -
3.4 Lithium ion battery manufacuting step by step
18:46
Section 4 How an electric vehicle works
-
4.1 How an electric vehicle works
05:56 -
4.2 Electric motor types and functions
12:08 -
4.3 In wheels electric motor with pros and cons
17:27 -
4.4 Controller functions and types
11:05 -
4.5 EV Inverter funtionality and types
08:41
Section 5 Types of the vehicles
-
5.1 Internal combustion engine (ICE) vehicle
08:01 -
5.2 Battery electric vehicle (BEV)
02:47 -
5.3 Hybrid electric vehicles (HEV)
02:06 -
5.4 Plug in hybrid electric vehicles (PHEV)
01:48 -
5.5 Extended range electric vehicles (EREV)
02:09 -
5.6 Fuel cell electric vehicles (FCEV)
04:23 -
5.7 Hydrogen combustion engine vehicle
13:08
Section 6 ICE vs EV torque output
-
6.1 ICE vs EV torque output
03:12
Section 7 Types of batteries used in electric vehicles
-
7.1 Lead acid batteries
02:38 -
7.2 Nickel based batteries
06:02 -
7.3 Lithium Nickel Manganese Cobalt Oxide (NMC) batteries
06:43 -
7.4 Lithium Nickel Cobalt Aluminum Oxide (NCA) batteries
03:36 -
7.5 Lithium Cobalt Oxide (LCO) batteries
02:11 -
7.6 Lithium Manganese Oxide (LMO) batteries
02:12 -
7.7 Lithium Titanate (LTO) batteries
03:21 -
7.8 Lithium Iron Phosphate (LFP) batteries
02:24 -
7.9 Lithium sulfur batteries
17:10 -
7.10 Supercapacitors vs lithium ion batteries for electric vehicles
08:58 -
7.11 Solid state batteries for EVs the future battery technology
15:19
Section 8 Charging of electric vehicles
-
8.1 Charging and their levels
02:32 -
8.2 Fast charging and overcharging
02:42 -
8.3 Tesla supercharging network
04:35 -
8.4 Home charging
04:10 -
8.5 Public charging
02:54 -
8.6 Solar charging
01:31 -
8.7 Vehicle to vehicle (V2V) charging
02:26 -
8.8 V2H and V2G charging
02:06 -
8.9 Wireless charging
10:50 -
8.10 Battery swapping
04:28 -
8.11 Smart grid integration of EVs
14:38
Section 9 Battery thermal management system
-
9.1 Why battery thermal management system is needed
01:10 -
9.2 Why battery efficiency decrease in winter
07:33 -
9.3 Why battery get heated
02:18 -
9.4 Thermal runaway
04:23 -
9.5 Phase change cooling
01:15 -
9.6 Fin cooling
01:08 -
9.7 Air cooling
01:48 -
9.8 Liquid cooling with direct and indirect methods
03:52
Section 10 Reasons of catching fire and safety improvement
-
10.1 Reasons of catching fire and safety improvement
09:31
Section 11 Battery configurations
-
11.1 Series configuration
04:24 -
11.2 Parallel configuration
02:07 -
11.3 Series and parallel configuration
04:04
Section 12 Electric vehicle manufacturing process overview
-
12.1 Electric vehicle manufacturing process overview
11:29 -
12.2 3D printing technology for EV components and parts development
11:43 -
12.3 Sustainable materials for EV manufacturing
11:22
Section 13 Cost of EV ownership
-
13.1 Capital or buying cost of electric vehicle
02:04 -
13.2 Running cost of electric vehicle
06:48
Section 14 Retrofitting gas cars to electric cars
-
14.1 Retrofitting conventional car to electric car
19:14 -
14.2 Difference between EV and Retrofit-EV
06:54
Section 15 Impacts of electric vehicles on society
-
15.1 Impacts of electric vehicle on environment
05:04 -
15.2 Impacts of electric vehicle on economy
03:36 -
15.3 Environmental impacts of spent or used batteries
10:03
Section 16 Electric vehicle will kill the gas car
-
16.1 Reasons of EVs will kill the ICE vehicles
03:36
Section 17 Important information section
-
17.1 EV battery standardization
04:47 -
17.2 Packing and protection of battery packs
02:38 -
17.3 Position of the battery in EV
02:04 -
17.4 Electric vehicle dynamics
15:38 -
17.5 EV’s range influence factors
02:52 -
17.6 Electric vehicle safety sensors
04:48 -
17.7 Lifecycle of the electric vehicle batteries
03:34 -
17.8 EV battery recycling methods
28:16
Section 18 Electric vehicles business opportunities
-
18.1 Electric vehicle business opportunities
04:28 -
18.2 Early acceptors will take the lead
02:28
Section 19 Future of electric vehicles
-
19.1 Most ready countries for electric vehicles
05:38 -
19.2 Most ready electric vehicle manufacturers
03:44 -
19.3 Electric vehicles adaptation rate
06:21 -
19.4 Self-Driving Future Will Be Electric
03:59 -
19.5 Role of Artificial Intelligence and Machine Learning in EV developments
20:26 -
19.6 Cybersecurity threats and their solutions in electric vehicles
09:56 -
19.7 EV after 10 years
11:31
Section 20 Get skilled in electric vehicle industrial field
-
20.1 Get skilled in EV industry field
11:15
-
LevelAll Levels
-
Total Enrolled1
-
Duration10 hours
-
Enrollment validityEnrollment validity: 10 days
-
CertificateCertificate of completion
What I will learn?
- Essential understanding of the electric vehicles
- Types of electric vehicles with technical information
- Types of EV batteries in detail
- ICE vs EV torque output
- EV battery configurations
- Charging technique and charging levels
- Working details of the electric vehicles
- Parts of the electric vehicles
- Overall analysis of the current EV technology
- Battery Thermal Management System
- Regenerative braking
- Types of battery combinations
- Lifespan of the EV and batteries
- Cost of ownership
- Impacts of EV on the economy
- Impacts of EV on the environment
- Charging systems
- Safety and performance enhancements of the EV batteries
- Business opportunities
- Future of the EV industry
Target Audience
- People who are keen to grow up their profession in the field of electric vehicles
- Students that are curious about how electric vehicles work and what are major components
- Everybody with a desire to study
- People with a general background in science or engineering
- Everybody with a desire to study
- Researcher, scientists and engineers that want to know essentials about the electric vehicles
- Students who are willing to learn about the current and future of the EV industry
Electric Vehicles Comprehensive Course
Welcome to our Electric Vehicle Comprehensive Online Video Course – your passport to mastering the world of electric mobility! This meticulously crafted course, featuring 10 hours of video content across 86 lectures, is designed to not only deepen your understanding of electric vehicles (EVs) but also to enhance your career prospects in this rapidly evolving industry.
Course Benefits:
1. Career Advancement: Whether you’re looking to break into the electric vehicle industry or aiming to upskill within it, our course provides the knowledge and expertise essential for success. Stay ahead of the curve and make yourself a valuable asset in this dynamic field.
2. Expert-Led Instruction: Learn from industry experts who bring real-world experience to the virtual classroom. Gain practical insights that will set you apart in job interviews and professional settings.
3. Supporting Materials: Complement your learning with downloadable PDF files accompanying many lecture. These materials serve as handy references, aiding you in mastering key concepts and providing valuable resources for your career in the electric vehicle sector.
4. Practice Assignments: Hone your skills through hands-on practice with our meticulously designed assignments. These real-world scenarios will empower you to confidently apply your knowledge in professional settings.
5. Stay Current: Our cutting-edge curriculum ensures you are well-versed in the latest advancements and industry trends. Equip yourself with the knowledge needed to thrive in an industry at the forefront of technological innovation.
6. Lifetime Access: Benefit from lifetime access to the course material, allowing you to revisit lectures and stay updated on industry developments throughout your career. Enroll now and accelerate your journey towards a rewarding career in the electric vehicle industry or elevate your skills to new heights within this transformative field.
What’s not in this course
One course can change your life
Your success starts here!
-
LevelAll Levels
-
Total Enrolled1
-
Duration10 hours
-
Enrollment validityEnrollment validity: 10 days
-
CertificateCertificate of completion
-
Curriculum
-
Benefits
-
Target Audience
Section 1 Course introduction
-
1.1 Course introduction
02:53
Section 2 Introduction
-
2.1 History of electric vehicles
04:41 -
2.2 Introduction to electric vehicles
03:56
Section 3 Lithium to lithium ion batteries
-
3.1 Lithium demand and resouces
21:08 -
3.2 Lithium mining and economics
14:23 -
3.3 Lithium extraction processes and comparison
20:07 -
3.4 Lithium ion battery manufacuting step by step
18:46
Section 4 How an electric vehicle works
-
4.1 How an electric vehicle works
05:56 -
4.2 Electric motor types and functions
12:08 -
4.3 In wheels electric motor with pros and cons
17:27 -
4.4 Controller functions and types
11:05 -
4.5 EV Inverter funtionality and types
08:41
Section 5 Types of the vehicles
-
5.1 Internal combustion engine (ICE) vehicle
08:01 -
5.2 Battery electric vehicle (BEV)
02:47 -
5.3 Hybrid electric vehicles (HEV)
02:06 -
5.4 Plug in hybrid electric vehicles (PHEV)
01:48 -
5.5 Extended range electric vehicles (EREV)
02:09 -
5.6 Fuel cell electric vehicles (FCEV)
04:23 -
5.7 Hydrogen combustion engine vehicle
13:08
Section 6 ICE vs EV torque output
-
6.1 ICE vs EV torque output
03:12
Section 7 Types of batteries used in electric vehicles
-
7.1 Lead acid batteries
02:38 -
7.2 Nickel based batteries
06:02 -
7.3 Lithium Nickel Manganese Cobalt Oxide (NMC) batteries
06:43 -
7.4 Lithium Nickel Cobalt Aluminum Oxide (NCA) batteries
03:36 -
7.5 Lithium Cobalt Oxide (LCO) batteries
02:11 -
7.6 Lithium Manganese Oxide (LMO) batteries
02:12 -
7.7 Lithium Titanate (LTO) batteries
03:21 -
7.8 Lithium Iron Phosphate (LFP) batteries
02:24 -
7.9 Lithium sulfur batteries
17:10 -
7.10 Supercapacitors vs lithium ion batteries for electric vehicles
08:58 -
7.11 Solid state batteries for EVs the future battery technology
15:19
Section 8 Charging of electric vehicles
-
8.1 Charging and their levels
02:32 -
8.2 Fast charging and overcharging
02:42 -
8.3 Tesla supercharging network
04:35 -
8.4 Home charging
04:10 -
8.5 Public charging
02:54 -
8.6 Solar charging
01:31 -
8.7 Vehicle to vehicle (V2V) charging
02:26 -
8.8 V2H and V2G charging
02:06 -
8.9 Wireless charging
10:50 -
8.10 Battery swapping
04:28 -
8.11 Smart grid integration of EVs
14:38
Section 9 Battery thermal management system
-
9.1 Why battery thermal management system is needed
01:10 -
9.2 Why battery efficiency decrease in winter
07:33 -
9.3 Why battery get heated
02:18 -
9.4 Thermal runaway
04:23 -
9.5 Phase change cooling
01:15 -
9.6 Fin cooling
01:08 -
9.7 Air cooling
01:48 -
9.8 Liquid cooling with direct and indirect methods
03:52
Section 10 Reasons of catching fire and safety improvement
-
10.1 Reasons of catching fire and safety improvement
09:31
Section 11 Battery configurations
-
11.1 Series configuration
04:24 -
11.2 Parallel configuration
02:07 -
11.3 Series and parallel configuration
04:04
Section 12 Electric vehicle manufacturing process overview
-
12.1 Electric vehicle manufacturing process overview
11:29 -
12.2 3D printing technology for EV components and parts development
11:43 -
12.3 Sustainable materials for EV manufacturing
11:22
Section 13 Cost of EV ownership
-
13.1 Capital or buying cost of electric vehicle
02:04 -
13.2 Running cost of electric vehicle
06:48
Section 14 Retrofitting gas cars to electric cars
-
14.1 Retrofitting conventional car to electric car
19:14 -
14.2 Difference between EV and Retrofit-EV
06:54
Section 15 Impacts of electric vehicles on society
-
15.1 Impacts of electric vehicle on environment
05:04 -
15.2 Impacts of electric vehicle on economy
03:36 -
15.3 Environmental impacts of spent or used batteries
10:03
Section 16 Electric vehicle will kill the gas car
-
16.1 Reasons of EVs will kill the ICE vehicles
03:36
Section 17 Important information section
-
17.1 EV battery standardization
04:47 -
17.2 Packing and protection of battery packs
02:38 -
17.3 Position of the battery in EV
02:04 -
17.4 Electric vehicle dynamics
15:38 -
17.5 EV’s range influence factors
02:52 -
17.6 Electric vehicle safety sensors
04:48 -
17.7 Lifecycle of the electric vehicle batteries
03:34 -
17.8 EV battery recycling methods
28:16
Section 18 Electric vehicles business opportunities
-
18.1 Electric vehicle business opportunities
04:28 -
18.2 Early acceptors will take the lead
02:28
Section 19 Future of electric vehicles
-
19.1 Most ready countries for electric vehicles
05:38 -
19.2 Most ready electric vehicle manufacturers
03:44 -
19.3 Electric vehicles adaptation rate
06:21 -
19.4 Self-Driving Future Will Be Electric
03:59 -
19.5 Role of Artificial Intelligence and Machine Learning in EV developments
20:26 -
19.6 Cybersecurity threats and their solutions in electric vehicles
09:56 -
19.7 EV after 10 years
11:31
Section 20 Get skilled in electric vehicle industrial field
-
20.1 Get skilled in EV industry field
11:15
- Essential understanding of the electric vehicles
- Types of electric vehicles with technical information
- Types of EV batteries in detail
- ICE vs EV torque output
- EV battery configurations
- Charging technique and charging levels
- Working details of the electric vehicles
- Parts of the electric vehicles
- Overall analysis of the current EV technology
- Battery Thermal Management System
- Regenerative braking
- Types of battery combinations
- Lifespan of the EV and batteries
- Cost of ownership
- Impacts of EV on the economy
- Impacts of EV on the environment
- Charging systems
- Safety and performance enhancements of the EV batteries
- Business opportunities
- Future of the EV industry
- People who are keen to grow up their profession in the field of electric vehicles
- Students that are curious about how electric vehicles work and what are major components
- Everybody with a desire to study
- People with a general background in science or engineering
- Everybody with a desire to study
- Researcher, scientists and engineers that want to know essentials about the electric vehicles
- Students who are willing to learn about the current and future of the EV industry