4. An anchored boat oscillates up and down in an ocean with regular waves. The boat moves a total of 5 feet from its low point through equilibrium (midpoint) to its high point, and it returns to its low point every 10 seconds. Write an equation that describes the displacement of the boat from equilibrium (above equilibrium is positive displacement, below equilibrium is negative displacement) assuming it is at its low point at t = 0. Graph one period of the motion.

Algebra & Trigonometry with Analytic Geometry
13th Edition
ISBN:9781133382119
Author:Swokowski
Publisher:Swokowski
Chapter11: Topics From Analytic Geometry
Section11.3: Hyperbolas
Problem 41E
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4.
An anchored boat oscillates up and down in an ocean with regular waves. The
boat moves a total of 5 feet from its low point through equilibrium (midpoint) to its
high point, and it returns to its low point every 10 seconds. Write an equation that
describes the displacement of the boat from equilibrium (above equilibrium is positive
displacement, below equilibrium is negative displacement) assuming it is at its low
point at t = 0. Graph one period of the motion.
Transcribed Image Text:4. An anchored boat oscillates up and down in an ocean with regular waves. The boat moves a total of 5 feet from its low point through equilibrium (midpoint) to its high point, and it returns to its low point every 10 seconds. Write an equation that describes the displacement of the boat from equilibrium (above equilibrium is positive displacement, below equilibrium is negative displacement) assuming it is at its low point at t = 0. Graph one period of the motion.
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