A mass on the end of a spring is gently pulled from equilibrium and released setting the system into oscillatory motion in the vertical direction. It takes 0.43s for the mass to go from it's lowest position to its highest position. The period of oscillation is: Select one: O sin(@t) = cos(0t - n) O There is not enough information given to determine the period 0.86s 0.43s 0.215s

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter12: Oscillatory Motion
Section12.2: Analysis Model: Particle In Simple Harmonic Motion
Problem 12.4QQ: An object of mass m is hung from a spring and set into oscillation. The period of the oscillation is...
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A mass on the end of a spring is gently pulled from equilibrium and released setting the system into oscillatory motion in
the vertical direction. It takes 0.43s for the mass to go from it's lowest position to its highest position. The period of
of
oscillation is:
Select one:
sin(@t) = cos(0t – n)
%3D
OThere is not enough information given to determine the period
0.86s
0.43s
0.215s
Transcribed Image Text:A mass on the end of a spring is gently pulled from equilibrium and released setting the system into oscillatory motion in the vertical direction. It takes 0.43s for the mass to go from it's lowest position to its highest position. The period of of oscillation is: Select one: sin(@t) = cos(0t – n) %3D OThere is not enough information given to determine the period 0.86s 0.43s 0.215s
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