The 15-kg block A slides on the surface for which μk = 0.3.The block has a velocity v = 12 m/s when it is s = 3 m from the 11-kg block B. The unstretched spring has a stiffness k = 1200 N/m . Take e = 0.6. The coefficient of friction is the same for both blocks. a) Determine the maximum compression of the spring due to the collision. xmax = ?

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The 15-kg block A slides on the surface for which μk = 0.3.The block has a velocity v = 12 m/s when it is s = 3 m from the 11-kg block B. The unstretched spring has a stiffness k = 1200 N/m . Take e = 0.6. The coefficient of friction is the same for both blocks.

a) Determine the maximum compression of the spring due to the collision.

xmax = ?

 

 

Wrong Submitted Answers:

xmax = 0.9933 m

 

Part A
The 15-kg block A slides on the surface for which uk = 0.3.
The block has a velocity v = 12 m/s when it is s = 3 m
from the 11-kg block B. The unstretched spring has a
stiffness k = 1200 N/m . Take e = 0.6. The coefficient of
friction is the same for both blocks. (Figure 1).
Determine the maximum compression of the spring due to the collision.
Express your answer to three significant figures and include the appropriate units.
?
0.993
Xmax =
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Figure
1 of 1
k
B
Transcribed Image Text:Part A The 15-kg block A slides on the surface for which uk = 0.3. The block has a velocity v = 12 m/s when it is s = 3 m from the 11-kg block B. The unstretched spring has a stiffness k = 1200 N/m . Take e = 0.6. The coefficient of friction is the same for both blocks. (Figure 1). Determine the maximum compression of the spring due to the collision. Express your answer to three significant figures and include the appropriate units. ? 0.993 Xmax = Submit Previous Answers Request Answer X Incorrect; Try Again Provide Feedback Figure 1 of 1 k B
-k
B
A
Transcribed Image Text:-k B A
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