A 120 g mass is attached to a spring with constant 20 N/m, as shown below. Assume the surface is frictionless. If the mass is pulled back 15 cm from the equilibrium position and then released, find the speed of the mass after it has moved 5 cm.

Principles of Physics: A Calculus-Based Text
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ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
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Chapter12: Oscillatory Motion
Section: Chapter Questions
Problem 13P: A 500-kg object attached to a spring with a force constant of 8.00 N/m vibrates in simple harmonic...
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A 120 g mass is attached to a spring with constant 20 N/m, as shown below. Assume the surface is
frictionless. If the mass is pulled back 15 cm from the equilibrium position and then released, find the
speed of the mass after it has moved 5 cm.
1.429 m/s
1.600 m/s
1.559 m/s
1.430 m/s
1.417 m/s
1.443 m/s
А.
D.
В.
Е.
С.
F.
Transcribed Image Text:A 120 g mass is attached to a spring with constant 20 N/m, as shown below. Assume the surface is frictionless. If the mass is pulled back 15 cm from the equilibrium position and then released, find the speed of the mass after it has moved 5 cm. 1.429 m/s 1.600 m/s 1.559 m/s 1.430 m/s 1.417 m/s 1.443 m/s А. D. В. Е. С. F.
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