truck moving at 35.0 mph collides head on with a car traveling in the opposite direction. The mass of the car is 550 kg, the mass of the truck is 2200 kg. During the collision both vehicles come to a stop in 0.150 s as the front end of both vehicles’ crumples. What was the acceleration of the car? Assume that during the collision the acceleration of each vehicle is constant. Also, assume that frictional force are small compared to the forces compared to the

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Chapter1: Units, Trigonometry. And Vectors
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truck moving at 35.0 mph collides head on with a car traveling in the opposite direction. The mass of the car is 550 kg, the mass of the truck is 2200 kg. During the collision both vehicles come to a stop in 0.150 s as the front end of both vehicles’ crumples. What was the acceleration of the car? Assume that during the collision the acceleration of each vehicle is constant. Also, assume that frictional force are small compared to the forces compared to the contact forces between the vehicles during the collision
3) A truck moving at 35.0 mph collides head on with a car traveling in the opposite direction. The mass
of the car is 550 kg, the mass of the truck is 2200 kg. During the collision both vehicles come to a stop in
0.150 s as the front end of both vehicles' crumples. What was the acceleration of the car? Assume that
during the collision the acceleration of each vehicle is constant. Also, assume that frictional force are
small compared to the forces compared to the contact forces between the vehicles during the collision.
Transcribed Image Text:3) A truck moving at 35.0 mph collides head on with a car traveling in the opposite direction. The mass of the car is 550 kg, the mass of the truck is 2200 kg. During the collision both vehicles come to a stop in 0.150 s as the front end of both vehicles' crumples. What was the acceleration of the car? Assume that during the collision the acceleration of each vehicle is constant. Also, assume that frictional force are small compared to the forces compared to the contact forces between the vehicles during the collision.
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