Based on the view from above, write an equation describing Han's vertical position v, in feet, relative to the center of the carousel t seconds after the carousel starts moving. 2. Sketch a graph of v, assuming the carousel rotates without stopping, labeling the t-axis and showing at least one complete revolution of the carousel. VA

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
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Question
H
1. Based on the view from above, write an equation describing Han's vertical position v, in feet,
relative to the center of the carouselt seconds after the carousel starts moving.
2. Sketch a graph of v, assuming the carousel rotates without stopping, labeling the t-axis and
showing at least one complete revolution of the carousel.
20
15
10
5
0
-5
-10
-15
-20
-25
Transcribed Image Text:H 1. Based on the view from above, write an equation describing Han's vertical position v, in feet, relative to the center of the carouselt seconds after the carousel starts moving. 2. Sketch a graph of v, assuming the carousel rotates without stopping, labeling the t-axis and showing at least one complete revolution of the carousel. 20 15 10 5 0 -5 -10 -15 -20 -25
A carousel moves in a counterclockwise direction. It makes one complete revolution every 16
seconds. Han is sitting 11 feet from the center of the carousel. Here is a view of the carousel from
above.
P
11 feet
H
1. Based on the view from above, write an equation describing Han's vertical position v, in feet,
relative to the center of the carousel t seconds after the carousel starts moving.
2. Sketch a graph of v, assuming the carousel rotates without stopping, labeling the t-axis and
showing at least one complete revolution of the carousel.
Transcribed Image Text:A carousel moves in a counterclockwise direction. It makes one complete revolution every 16 seconds. Han is sitting 11 feet from the center of the carousel. Here is a view of the carousel from above. P 11 feet H 1. Based on the view from above, write an equation describing Han's vertical position v, in feet, relative to the center of the carousel t seconds after the carousel starts moving. 2. Sketch a graph of v, assuming the carousel rotates without stopping, labeling the t-axis and showing at least one complete revolution of the carousel.
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