A spring is attached to the ceiling and pulled 9 cm down from equilibrium and released. After 2 seconds the amplitude has decreased to 7 cm. The spring oscillates 20 times each second. Assume that the amplitude is decreasing exponentially. Find an equation for the distance, D the end of the spring is below equilibrium in terms of seconds, t.

College Algebra
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ISBN:9781938168383
Author:Jay Abramson
Publisher:Jay Abramson
Chapter6: Exponential And Logarithmic Functions
Section: Chapter Questions
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A spring is attached to the ceiling and pulled 9 cm down from equilibrium and released. After 2 seconds the
amplitude has decreased to 7 cm. The spring oscillates 20 times each second. Assume that the amplitude is
decreasing exponentially. Find an equation for the distance, D the end of the spring is below equilibrium in
terms of seconds, t.
D(t) =
Transcribed Image Text:A spring is attached to the ceiling and pulled 9 cm down from equilibrium and released. After 2 seconds the amplitude has decreased to 7 cm. The spring oscillates 20 times each second. Assume that the amplitude is decreasing exponentially. Find an equation for the distance, D the end of the spring is below equilibrium in terms of seconds, t. D(t) =
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