The figure below is for a mass/spring system. The mass is 0.6 kg. v(m/s) 20.0 15.0 10.0 S0 -5.0 -10.0 -15.0 -20.0 03 0.6 0.9 12 1.5 1.8 4. Find the maximum displacement. 5. Find the maximum acceleration. 6. Find the spring constant. 7. Find the maximum kinetic energy. 8. Find the maximum potential energy. 9. Find the velocity at t 0.47 s. 10. Find the displacement at t 0.47 s. 11. Find the acceleration at t 0.47 s.

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter5: Energy
Section: Chapter Questions
Problem 82AP: As a 75.0-kg man steps onto a bathroom scale, the spring inside the scale compresses by 0.650 mm....
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The figure below is for a mass/spring system. The mass is 0.6 kg.
v(m/s)
20.0
15.0
10.0
S0
-5.0
-10.0
-15.0
-20.0
03
0.6
0.9
12
1.5
1.8
4. Find the maximum displacement.
5. Find the maximum acceleration.
6. Find the spring constant.
7. Find the maximum kinetic energy.
8. Find the maximum potential energy.
9. Find the velocity at t 0.47 s.
10. Find the displacement at t 0.47 s.
11. Find the acceleration at t 0.47 s.
Transcribed Image Text:The figure below is for a mass/spring system. The mass is 0.6 kg. v(m/s) 20.0 15.0 10.0 S0 -5.0 -10.0 -15.0 -20.0 03 0.6 0.9 12 1.5 1.8 4. Find the maximum displacement. 5. Find the maximum acceleration. 6. Find the spring constant. 7. Find the maximum kinetic energy. 8. Find the maximum potential energy. 9. Find the velocity at t 0.47 s. 10. Find the displacement at t 0.47 s. 11. Find the acceleration at t 0.47 s.
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