A mass m = 1.1 kg hangs at the end of a vertical spring whose top end is fixed to the ceiling. The spring has spring constant k = 55 N/m and negligible mass. At time t = 0 the mass is released from rest at a distance d = 0.45 m below its equilibrium height and undergoes simple harmonic motion with its position given as a function of time by y(t) = A cos(ωt – φ). The positive y-axis points upward. a)Find the angular frequency of oscillation, in radians per second.  b) Determine the value of φ, in radians.  c)What is the magnitude of the mass’s maximum acceleration, in meters per second squared?

Principles of Physics: A Calculus-Based Text
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Author:Raymond A. Serway, John W. Jewett
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Chapter12: Oscillatory Motion
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Problem 17P: A block of unknown mass is attached to a spring with a spring constant of 6.50 N/m and undergoes...
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A mass m = 1.1 kg hangs at the end of a vertical spring whose top end is fixed to the ceiling. The spring has spring constant k = 55 N/m and negligible mass. At time t = 0 the mass is released from rest at a distance d = 0.45 m below its equilibrium height and undergoes simple harmonic motion with its position given as a function of time by y(t) = A cos(ωt – φ). The positive y-axis points upward.

a)Find the angular frequency of oscillation, in radians per second. 

b) Determine the value of φ, in radians. 

c)What is the magnitude of the mass’s maximum acceleration, in meters per second squared? 

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