10. A carnival Ferris wheel with a radius of 5 m makes one complete revolution every 24 s. The center of the wheel is 6 m above the ground. a) Att=0 the rider is at the lowest point. Draw a graph of one rotation to show how a person's height above the ground varies with the time starting at its lowest point. b) Find the equation for the graph. Show your work. c) Determine the first two times the rider is 10m above the ground, to the nearest tenth of a second.

Algebra & Trigonometry with Analytic Geometry
13th Edition
ISBN:9781133382119
Author:Swokowski
Publisher:Swokowski
Chapter3: Functions And Graphs
Section3.2: Graphs Of Equations
Problem 45E
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10. A carnival Ferris wheel with a radius of 5 m makes one complete revolution every 24 s. The
center of the wheel is 6 m above the ground.
Att=0 the rider is at the lowest point. Draw a graph of one rotation to show how a person's
a)
height above the ground varies with the time starting at its lowest point.
b)
Find the equation for the graph. Show your work.
c)
Determine the first two times the rider is 10 m above the ground, to the nearest tenth of a
second.
Transcribed Image Text:10. A carnival Ferris wheel with a radius of 5 m makes one complete revolution every 24 s. The center of the wheel is 6 m above the ground. Att=0 the rider is at the lowest point. Draw a graph of one rotation to show how a person's a) height above the ground varies with the time starting at its lowest point. b) Find the equation for the graph. Show your work. c) Determine the first two times the rider is 10 m above the ground, to the nearest tenth of a second.
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