4. A 0.6-kg brick is thrown into a 25-kg wagon which is initially at rest. If, upon entering, the brick has a velocity of 10 m/s as shown. 1) Draw diagram of brick and wagon before and after landing 2) Draw an momentum before landing and impulse of the brick and momentum after landing, 3) draw a FBD of the wagon 4) determine the final velocity (just after the brick landing) of the wagon, and 5) Find the total wheel force of the Wagon. 30° v = 10 m/s
4. A 0.6-kg brick is thrown into a 25-kg wagon which is initially at rest. If, upon entering, the brick has a velocity of 10 m/s as shown. 1) Draw diagram of brick and wagon before and after landing 2) Draw an momentum before landing and impulse of the brick and momentum after landing, 3) draw a FBD of the wagon 4) determine the final velocity (just after the brick landing) of the wagon, and 5) Find the total wheel force of the Wagon. 30° v = 10 m/s
College Physics
1st Edition
ISBN:9781938168000
Author:Paul Peter Urone, Roger Hinrichs
Publisher:Paul Peter Urone, Roger Hinrichs
Chapter8: Linear Momentum And Collisions
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Problem 11PE: Professional Application Suppose a child drives a bumper car head on into the side rail, which...
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
Transcribed Image Text:4. A 0.6-kg brick is thrown into a 25-kg wagon which is initially at rest. If, upon entering, the
brick has a velocity of 10 m/s as shown. 1) Draw diagram of brick and wagon before and
after landing 2) Draw an momentum before landing and impulse of the brick and
momentum after landing, 3) draw a FBD of the wagon 4) determine the final velocity (just
after the brick landing) of the wagon, and 5) Find the total wheel force of the Wagon.
30°
v = 10 m/s

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