The magnitude of the before- and after-collision momentum of two colliding objects is shown. The direction of the momentum is indicated by the arrow. The change in momentum of object A is momentum of object B is commas; no spaces. (A leftward momentum is a negative momentum.) a. -15 b. -10 kg • m/s. The change in kg • m/s. Enter the two letters in order; no c. -5 d. 5 e. 10 Before Collision After Collision f. 15 B B g. 40 h. 50 p = 30 kg•m/s p = 15 kg•m/s p = 20 kg•m/s p = 25 kg•m/s

Glencoe Physics: Principles and Problems, Student Edition
1st Edition
ISBN:9780078807213
Author:Paul W. Zitzewitz
Publisher:Paul W. Zitzewitz
Chapter9: Momentum And Its Conservation
Section: Chapter Questions
Problem 64A
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The magnitude of the before- and after-collision momentum of two colliding
objects is shown. The direction of the momentum is indicated by the arrow.
The change in momentum of object A is
momentum of object B is
commas; no spaces. (A leftward momentum is a negative momentum.)
a. -15
b. -10
kg • m/s. The change in
kg • m/s. Enter the two letters in order; no
c. -5
d. 5
e. 10
Before Collision
After Collision
f. 15
B
B
g. 40
h. 50
p = 30 kg•m/s
p = 15 kg•m/s
p = 20 kg•m/s
p = 25 kg•m/s
Transcribed Image Text:The magnitude of the before- and after-collision momentum of two colliding objects is shown. The direction of the momentum is indicated by the arrow. The change in momentum of object A is momentum of object B is commas; no spaces. (A leftward momentum is a negative momentum.) a. -15 b. -10 kg • m/s. The change in kg • m/s. Enter the two letters in order; no c. -5 d. 5 e. 10 Before Collision After Collision f. 15 B B g. 40 h. 50 p = 30 kg•m/s p = 15 kg•m/s p = 20 kg•m/s p = 25 kg•m/s
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