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AERODYNAMICS#1
The study of how air interacts with moving vehicles, crucial for optimizing speed and stability in racing.
CAD (COMPUTER-AIDED DESIGN)#2
Software used to create precision drawings and technical illustrations, essential for modern vehicle design.
CHASSIS#3
The base frame of a vehicle, providing structural support and housing for components like the engine and suspension.
DYNAMIC STABILITY#4
The ability of a vehicle to maintain control and stability during motion, influenced by design and weight distribution.
ELECTRONIC CONTROL UNIT (ECU)#5
A computer that controls various aspects of a vehicle's performance, including engine management and safety systems.
MATERIALS SCIENCE#6
The study of materials and their properties, crucial for selecting components that enhance vehicle performance.
PROTOTYPE#7
An initial model of a vehicle or component used for testing and validation before mass production.
RACING REGULATIONS#8
Rules and standards governing vehicle design and performance in competitive motorsports.
SUSPENSION SYSTEM#9
Components that connect a vehicle to its wheels, affecting handling, comfort, and stability.
VEHICLE DYNAMICS#10
The study of forces and motions acting on a vehicle, critical for optimizing performance in racing.
WEIGHT DISTRIBUTION#11
The distribution of a vehicle's weight, impacting handling, traction, and overall performance.
AERODYNAMIC DRAG#12
The resistance an object faces while moving through air, which affects speed and fuel efficiency.
LAP TIME#13
The total time taken to complete a circuit, a key performance metric in racing.
DATA ANALYSIS#14
The process of inspecting and interpreting data collected during performance testing to inform design improvements.
COMPLIANCE CHECKLIST#15
A document outlining the necessary regulations and standards that a vehicle must meet to compete.
RAPID PROTOTYPING#16
Techniques used to quickly fabricate a scale model or functional part, enabling faster testing and iteration.
AERODYNAMIC LIFT#17
The upward force generated by airflow over a vehicle, which can affect stability and traction.
TESTING PLAN#18
A structured approach to evaluating a vehicle's performance through controlled tests and measurements.
COLLABORATIVE CAD WORKFLOWS#19
Team-based approaches to CAD design, enhancing efficiency and innovation in vehicle development.
PERFORMANCE TESTING#20
Evaluating a vehicle's performance metrics, such as speed, handling, and durability under various conditions.
COST-BENEFIT ANALYSIS#21
A financial assessment comparing the costs and benefits of different material choices for vehicle components.
INNOVATIVE MATERIALS#22
New and advanced materials designed to enhance performance, safety, and efficiency in racing vehicles.
SUSPENSION TUNING#23
Adjusting suspension settings to optimize handling and ride quality based on vehicle dynamics.
SYSTEM INTEGRATION#24
The process of ensuring various vehicle systems work together effectively for optimal performance.
ENGINE MANAGEMENT SYSTEM#25
A system that controls engine functions, optimizing performance and efficiency through various sensors.