A mass weighing 24 pounds, attached to the end of a spring, stretches it 4 inches. Initially, the mass is released from rest from a point 4 inches above the equilibrium position. Find the equation of motion. (Use g 32 ft/s2 for the acceleration due to gravity.) x(t)-- -cos(4√6) Need Help? Read It Watch It

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Author:Raymond A. Serway, Chris Vuille
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Chapter1: Units, Trigonometry. And Vectors
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A mass weighing 24 pounds, attached to the end of a spring, stretches it 4 inches. Initially, the mass is released from rest from a point 4 inches above the equilibrium position. Find the equation of motion. (Use g = 32 ft/s2 for the acceleration due to gravity.)
cos(4√6)t
x(t) =
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Transcribed Image Text:A mass weighing 24 pounds, attached to the end of a spring, stretches it 4 inches. Initially, the mass is released from rest from a point 4 inches above the equilibrium position. Find the equation of motion. (Use g = 32 ft/s2 for the acceleration due to gravity.) cos(4√6)t x(t) = Need Help? Read It X ft Watch It
Expert Solution
Step 1

Given data:

Weight attached to spring , W = 24 pounds

Gravity, g = 32 ft/s2

And x be string length

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