DETAILS SERCP11 13.A.P.066. MY NOTES PRACTICE ANOTHER A 500-g block is released from rest and slides down a frictionless track that begins 2.32 m above the horizontal, as shown in the figure below. At the bottom of the track, where the surface is horizontal, the block strikes and sticks to a light spring with a spring constant of 17.5 N/m. Find the maximum distance the spring is compressed. 500
DETAILS SERCP11 13.A.P.066. MY NOTES PRACTICE ANOTHER A 500-g block is released from rest and slides down a frictionless track that begins 2.32 m above the horizontal, as shown in the figure below. At the bottom of the track, where the surface is horizontal, the block strikes and sticks to a light spring with a spring constant of 17.5 N/m. Find the maximum distance the spring is compressed. 500
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![DETAILS
SERCP11 13.A.P.066.
MY NOTES
PRACTICE ANOTHER
A 500-g block is released from rest and slides down a frictionless track that begins 2.32 m above the horizontal, as
shown in the figure below. At the bottom of the track, where the surface is horizontal, the block strikes and sticks to a
light spring with a spring constant of 17.5 N/m. Find the maximum distance the spring is compressed.
m
500 g](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F5dd332eb-7472-4da1-a74a-0b39f3ffa007%2F0a269927-df16-4252-8353-0f8b3eef6929%2Fy9acc7o_processed.jpeg&w=3840&q=75)
Transcribed Image Text:DETAILS
SERCP11 13.A.P.066.
MY NOTES
PRACTICE ANOTHER
A 500-g block is released from rest and slides down a frictionless track that begins 2.32 m above the horizontal, as
shown in the figure below. At the bottom of the track, where the surface is horizontal, the block strikes and sticks to a
light spring with a spring constant of 17.5 N/m. Find the maximum distance the spring is compressed.
m
500 g
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