A buoy floating in the ocean is bobbing in simple harmonic motion with amplitude 6 ft and period 7 seconds. Its displacement d from sea level at time t=0 seconds is -6 ft, and initially it moves upward. (Note that upward is the positive direction.) Give the equation modeling the displacement d as a function of time t.

Trigonometry (MindTap Course List)
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Author:Ron Larson
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Chapter3: Additional Topics In Trigonometry
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A buoy floating in the ocean is bobbing in simple harmonic motion with amplitude 6 ft and period 7 seconds. Its
displacement d from sea level at time t=0 seconds is -6 ft, and initially it moves upward. (Note that upward is the positive
direction.)
Give the equation modeling the displacement d as a function of time t.
d = 6 sin
2n
t+
3n
0
A
X
8 0/6
OSO OSO
3
Transcribed Image Text:A buoy floating in the ocean is bobbing in simple harmonic motion with amplitude 6 ft and period 7 seconds. Its displacement d from sea level at time t=0 seconds is -6 ft, and initially it moves upward. (Note that upward is the positive direction.) Give the equation modeling the displacement d as a function of time t. d = 6 sin 2n t+ 3n 0 A X 8 0/6 OSO OSO 3
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