An object of mass 0.4 kg at the end of a spring is released at an initial height of h = 0.494 m relative to the equilibrium position, and with initial velocity 1.003 m/s. After it is released, the object oscillates at 2 rad/s. a. Find the amplitude of the oscillation b. Find the phase constant , where x(t) = A cos (wt + 0) c. What is the acceleration at t=0? d. What is the total energy of the system?

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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An object of mass 0.4 kg at the end of a spring is released at an initial height of h = 0.494 m relative
to the equilibrium position, and with initial velocity 1.003 m/s. After it is released, the object
oscillates at 2 rad/s.
a. Find the amplitude of the oscillation
b. Find the phase constant 4, where x(t) = A cos (wt + p)
c. What is the acceleration at t=0?
d. What is the total energy of the system?
Transcribed Image Text:An object of mass 0.4 kg at the end of a spring is released at an initial height of h = 0.494 m relative to the equilibrium position, and with initial velocity 1.003 m/s. After it is released, the object oscillates at 2 rad/s. a. Find the amplitude of the oscillation b. Find the phase constant 4, where x(t) = A cos (wt + p) c. What is the acceleration at t=0? d. What is the total energy of the system?
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