68. A block of mass 12.0 kg slides from rest down a friction- less 35.0° incline and is stopped by a strong spring with k = 3.00 x 104 N/m. The block slides 3.00 m from the point of release to the point where it comes to rest against the spring. When the block comes to rest, how far has the spring been compressed?

University Physics Volume 1
18th Edition
ISBN:9781938168277
Author:William Moebs, Samuel J. Ling, Jeff Sanny
Publisher:William Moebs, Samuel J. Ling, Jeff Sanny
Chapter8: Potential Energy And Conservation Of Energy
Section: Chapter Questions
Problem 79AP: Consider a block of mass 0.200 kg attached to a spring of spring constant 100 N/m. The block is...
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68. A block of mass 12.0 kg slides from rest down a friction-
less 35.0° incline and is stopped by a strong spring with
k = 3.00 x 104 N/m. The block slides 3.00 m from the
point of release to the point where it comes to rest against
the spring. When the block comes to rest, how far has the
spring been compressed?
Transcribed Image Text:68. A block of mass 12.0 kg slides from rest down a friction- less 35.0° incline and is stopped by a strong spring with k = 3.00 x 104 N/m. The block slides 3.00 m from the point of release to the point where it comes to rest against the spring. When the block comes to rest, how far has the spring been compressed?
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