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ELECTRIC VEHICLE (EV)#1
A vehicle powered by electric motors using energy stored in batteries, offering a cleaner alternative to gasoline vehicles.
BATTERY#2
A device that stores electrical energy for use in powering electric vehicles, crucial for vehicle range and performance.
MOTOR#3
An electric component that converts electrical energy from the battery into mechanical energy to drive the vehicle.
CONTROLLER#4
An electronic device that manages the flow of electricity from the battery to the motor, controlling speed and torque.
CIRCUITRY#5
The system of electrical components and connections that enable the flow of electricity throughout the vehicle.
WIRING DIAGRAM#6
A visual representation of the electrical connections and components in a vehicle, essential for assembly and troubleshooting.
CHASSIS#7
The base frame of the vehicle that supports the body and components, providing structural integrity.
CUSTOMIZATION#8
The process of modifying a vehicle to enhance its performance or aesthetics, allowing personal expression.
ASSEMBLY#9
The act of putting together various components of the vehicle, ensuring they function correctly and safely.
TROUBLESHOOTING#10
The systematic approach to diagnosing and resolving issues that arise during the assembly or operation of the vehicle.
PERFORMANCE OPTIMIZATION#11
Enhancing vehicle efficiency and functionality through adjustments in design, components, or settings.
SAFETY PROTOCOLS#12
Guidelines and practices to ensure safe handling of electrical components during assembly and operation.
ELECTRICAL PRINCIPLES#13
Fundamental concepts governing the behavior of electricity, essential for understanding EV circuitry.
AESTHETIC ENHANCEMENTS#14
Modifications aimed at improving the visual appeal of the vehicle, such as paint or decals.
PERFORMANCE UPGRADES#15
Improvements made to enhance the vehicle's speed, handling, or overall functionality.
TESTING PLAN#16
A structured approach to evaluate the performance of the assembled vehicle, identifying metrics and methods.
ENERGY EFFICIENCY#17
The ability of the vehicle to maximize distance traveled per unit of energy consumed, critical for EV design.
COMPARISON WITH GASOLINE VEHICLES#18
Analyzing differences between electric and gasoline vehicles, including performance, maintenance, and environmental impact.
DIY (DO-IT-YOURSELF)#19
A hands-on approach to creating or modifying items independently, fostering creativity and practical skills.
MATERIALS FOR CUSTOMIZATION#20
Various substances used to enhance the vehicle's aesthetics or performance, such as lightweight composites or paints.
REAL-WORLD APPLICATIONS#21
Practical uses of knowledge gained in the course, applicable to future projects in automotive engineering.
PASSION FOR AUTOMOTIVE INNOVATIONS#22
An enthusiasm for exploring and contributing to advancements in vehicle technology and design.
FOUNDATIONAL UNDERSTANDING#23
A basic comprehension of essential concepts and components critical for further exploration in automotive engineering.