The height, in meters, of person on a Ferris wheel above the ground as a function of f, the time after boarding in minutes, is given by f(t)=-20 cos (51) +3 +35. a. The period of this function is b. The highest point in the ride is c. The height of 47 meters occurs when cos(t) = There are two values within (0, 2) which (5) could be equal to. These give two values of t within the first turn for which the height is 47 meters. Within a turn, the height remains above 47 meters for meters above the floor. It occurs for the first time minutes. minutes after boarding

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
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The height, in meters, of person on a Ferris wheel above the ground as a function of f, the time after boarding in minutes, is given by f(t)=-20 cos (5) +
+35
a. The period of this function is
b. The highest point in the ride is
c. The height of 47 meters occurs when cos(t)=
There are two values within (0,2m) which (3) could be equal to.
These give two values of t within the first turn for which the height is 47 meters
Within a turn, the height remains above 47 meters for
meters above the floor. It occurs for the first time
minutos.
minutes after boarding.
Transcribed Image Text:The height, in meters, of person on a Ferris wheel above the ground as a function of f, the time after boarding in minutes, is given by f(t)=-20 cos (5) + +35 a. The period of this function is b. The highest point in the ride is c. The height of 47 meters occurs when cos(t)= There are two values within (0,2m) which (3) could be equal to. These give two values of t within the first turn for which the height is 47 meters Within a turn, the height remains above 47 meters for meters above the floor. It occurs for the first time minutos. minutes after boarding.
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