A spring (k = 600 N/m) is placed in a vertical position with its lower end supported by a horizontal surface. The upper end is depressed 20 cm, and a 4.0-kg block is placed on top of the depressed spring. The system is then released from rest. How far above the point of release will the block rise? 46 cm 31 сm 36 cm 41 cm 20 сm

Physics for Scientists and Engineers
10th Edition
ISBN:9781337553278
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter7: Energy Of A System
Section: Chapter Questions
Problem 48AP: An inclined plane of angle has a spring of force constant k fastened securely at the bottom so that...
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A spring (k
= 600 N/m) is placed in a vertical position with its lower end supported by a horizontal
surface. The
upper end is depressed 20 cm, and a 4.0-kg block is placed on top of the depressed spring. The
system is then released from rest. How far above the point of release will the block rise?
46 cm
31 cm
36 cm
41 cm
20 cm
Transcribed Image Text:A spring (k = 600 N/m) is placed in a vertical position with its lower end supported by a horizontal surface. The upper end is depressed 20 cm, and a 4.0-kg block is placed on top of the depressed spring. The system is then released from rest. How far above the point of release will the block rise? 46 cm 31 cm 36 cm 41 cm 20 cm
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