You are investigating a collision between three boats on a lake. You know the mass of each boat, aswell as their initial velocities. Boat A: Mass: 451kg, Initial Velocity: 8x̂ Boat B: Mass 512kg, Intial Velocity: 2x̂-6ŷ Boat C: Mass 575kg, Intial Velocity: ? Intial Velocities given in m/s. After the collision, the GPS devices on boats A and B agree that the velocity was (−3 m/s)x̂ + (4 m/s)ŷ. Unfortunately, the captain of boat C claims their GPS tracker was destroyed in the collision. What was the velocity of boat C just before the collision?
You are investigating a collision between three boats on a lake. You know the mass of each boat, aswell as their initial velocities. Boat A: Mass: 451kg, Initial Velocity: 8x̂ Boat B: Mass 512kg, Intial Velocity: 2x̂-6ŷ Boat C: Mass 575kg, Intial Velocity: ? Intial Velocities given in m/s. After the collision, the GPS devices on boats A and B agree that the velocity was (−3 m/s)x̂ + (4 m/s)ŷ. Unfortunately, the captain of boat C claims their GPS tracker was destroyed in the collision. What was the velocity of boat C just before the collision?
University Physics Volume 1
18th Edition
ISBN:9781938168277
Author:William Moebs, Samuel J. Ling, Jeff Sanny
Publisher:William Moebs, Samuel J. Ling, Jeff Sanny
Chapter9: Linear Momentum And Collisions
Section: Chapter Questions
Problem 58P: A proton traveling at 3.0106m/s scatters elastically from an initially stationary alpha particle and...
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You are investigating a collision between three boats on a lake. You know the mass of each boat, aswell as their initial velocities.
Boat A: Mass: 451kg, Initial Velocity: 8x̂
Boat B: Mass 512kg, Intial Velocity: 2x̂-6ŷ
Boat C: Mass 575kg, Intial Velocity: ?
Intial Velocities given in m/s.
After the collision, the GPS devices on boats A and B agree that the velocity was (−3 m/s)x̂ +
(4 m/s)ŷ. Unfortunately, the captain of boat C claims their GPS tracker was destroyed in the
collision. What was the velocity of boat C just before the collision?
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