ACTAR Crash Dynamics 3 — Questions and Answers
Question 1: Which physical principle explains why an unrestrained occupant continues moving forward at the vehicle's pre-crash speed when the vehicle suddenly decelerates?
- Newton's Third Law
- Newton's First Law (inertia) (Correct answer)
- Conservation of energy
- The impulse-momentum theorem
Correct answer: Newton's First Law (inertia)
Newton's First Law states that a body in motion continues at constant velocity unless acted upon by a net force; an unrestrained occupant lacks the restraining force the seatbelt would provide.
Question 2: When analyzing a low-speed rear-end collision, which factor most significantly affects the magnitude of delta-V experienced by the struck vehicle?
- Color of the striking vehicle
- Mass ratio between the striking and struck vehicles (Correct answer)
- Ambient temperature at time of collision
- Road grade perpendicular to travel
Correct answer: Mass ratio between the striking and struck vehicles
The mass ratio between the striking and struck vehicles directly determines how momentum is partitioned, making it the dominant factor in delta-V for the struck vehicle.
Question 3: In crash dynamics, 'restitution phase' refers to:
- The period during which vehicles deform prior to maximum engagement
- The period during which vehicles spring apart after reaching maximum crush (Correct answer)
- The post-crash deceleration to final rest
- The time during which airbags deploy
Correct answer: The period during which vehicles spring apart after reaching maximum crush
The restitution phase follows maximum engagement, during which stored elastic energy releases and the vehicles begin to separate.
Question 4: A vehicle traveling at 30 mph skids to a stop on dry asphalt with a drag factor of 0.75. Approximately how far does it skid before stopping?
- 40 ft
- 60 ft
- 80 ft (Correct answer)
- 100 ft
Correct answer: 80 ft
Using the skid formula d = S²/(30f): d = 30²/(30 × 0.75) = 900/22.5 = 40 ft.
Question 5: Which of the following best describes 'impulse' in the context of crash dynamics?
- The peak force during impact
- The product of force and the time over which it acts (Correct answer)
- The energy stored in vehicle deformation
- The change in velocity of one vehicle
Correct answer: The product of force and the time over which it acts
Impulse equals force multiplied by the duration of its application (J = F×Δt), and by the impulse-momentum theorem, it equals the change in momentum.
Question 6: During a rollover event, which energy component must be accounted for in addition to translational kinetic energy?
- Chemical potential energy
- Rotational kinetic energy (Correct answer)
- Gravitational potential energy of the engine block only
- Surface tension energy
Correct answer: Rotational kinetic energy
A rolling vehicle possesses rotational kinetic energy (½Iω²) in addition to translational kinetic energy (½mv²), and both must be considered in a full energy analysis.
Question 7: In pedestrian impact reconstruction, the 'wrap projection' distance is used to estimate the vehicle's speed because it reflects:
- How far the pedestrian walked before impact
- The horizontal distance the pedestrian traveled through the air after being struck by the hood (Correct answer)
- The distance the vehicle traveled after braking
- The rollout distance of the vehicle's tires
Correct answer: The horizontal distance the pedestrian traveled through the air after being struck by the hood
Wrap projection distance is the horizontal distance a pedestrian travels as a projectile after being struck and launched over the vehicle hood, correlated to impact speed through validated formulas.
Which physical principle explains why an unrestrained occupant continues moving forward at the vehicle's pre-crash speed when the vehicle suddenly decelerates?