2. A Ferris wheel has a radius of 40 feet and is boarded in the 6 o'clock position from a platform that is 5 feet above the ground. The wheel completes a counterclockwise revolution every 2 minutes. At t=0 the person is at the 3 o'clock position.

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
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Chapter2: Second-order Linear Odes
Section: Chapter Questions
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(b) Find a function F(t), using the sine function, for the height of the person above the ground after t
minutes.
(c) Find two times when a passenger is at a height of 65 feet.
(d) Find pair of equations for (x, y) = (G(t), F(t)) to describe the position of a passenger in the x, y-plane.
Transcribed Image Text:(b) Find a function F(t), using the sine function, for the height of the person above the ground after t minutes. (c) Find two times when a passenger is at a height of 65 feet. (d) Find pair of equations for (x, y) = (G(t), F(t)) to describe the position of a passenger in the x, y-plane.
2. A Ferris wheel has a radius of 40 feet and is boarded in the 6 o'clock position from a platform that is 5
feet above the ground. The wheel completes a counterclockwise revolution every 2 minutes. At t=0 the
person is at the 3 o'clock position.
Transcribed Image Text:2. A Ferris wheel has a radius of 40 feet and is boarded in the 6 o'clock position from a platform that is 5 feet above the ground. The wheel completes a counterclockwise revolution every 2 minutes. At t=0 the person is at the 3 o'clock position.
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