Blocks A (mass 3.50 kg) and B (mass 9.00 kg) move on a frictionless, horizontal surface. Initially, block B is at rest and block A is moving toward it at 2.00 m/s. The blocks are equipped with ideal spring bumpers. The collision is head-on, so all motion before and after the collision is along a straight line. Let + be the direction of the initial motion of block A.

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Velocity of A anb B
8:25
<Chapter 8
Exercise 8.47
↑
mylabmastering.pearson.com
< 6 of 15
Find the velocity of block A after they have
moved apart.
VA
Express your answer with the appropriate
units.
LO
Part E
μA
0.560
m
■
S
Submit
Previous Answers Request Answer
X Incorrect; Try Again; 5 atter
remaining
. LTE
+
Find the velocity of B after they have moved
apart.
7
?
:
Transcribed Image Text:8:25 <Chapter 8 Exercise 8.47 ↑ mylabmastering.pearson.com < 6 of 15 Find the velocity of block A after they have moved apart. VA Express your answer with the appropriate units. LO Part E μA 0.560 m ■ S Submit Previous Answers Request Answer X Incorrect; Try Again; 5 atter remaining . LTE + Find the velocity of B after they have moved apart. 7 ? :
Blocks A (mass 3.50 kg) and B (mass 9.00 kg)
move on a frictionless, horizontal surface. Initially,
block B is at rest and block A is moving toward it at
2.00 m/s. The blocks are equipped with ideal
spring bumpers. The collision is head-on, so all
motion before and after the collision is along a
straight line. Let +x be the direction of the initial
motion of block A.
Transcribed Image Text:Blocks A (mass 3.50 kg) and B (mass 9.00 kg) move on a frictionless, horizontal surface. Initially, block B is at rest and block A is moving toward it at 2.00 m/s. The blocks are equipped with ideal spring bumpers. The collision is head-on, so all motion before and after the collision is along a straight line. Let +x be the direction of the initial motion of block A.
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