2. A Ferris wheel 70 feet in diameter completes one revolution left every 58 seconds. Its center point is 40 feet above the ground. a.) Write a sinusoidal function H (t) to model a rider's height above ground as a function of time t in seconds. How long does it take a rider to go from the lowest point of travel to 61 feet above the ground? [First transform your function to make lowest point correspond to time t = 0.1 b.)
2. A Ferris wheel 70 feet in diameter completes one revolution left every 58 seconds. Its center point is 40 feet above the ground. a.) Write a sinusoidal function H (t) to model a rider's height above ground as a function of time t in seconds. How long does it take a rider to go from the lowest point of travel to 61 feet above the ground? [First transform your function to make lowest point correspond to time t = 0.1 b.)
Trigonometry (11th Edition)
11th Edition
ISBN:9780134217437
Author:Margaret L. Lial, John Hornsby, David I. Schneider, Callie Daniels
Publisher:Margaret L. Lial, John Hornsby, David I. Schneider, Callie Daniels
Chapter1: Trigonometric Functions
Section: Chapter Questions
Problem 1RE:
1. Give the measures of the complement and the supplement of an angle measuring 35°.
Related questions
Question
![2.
A Ferris wheel
70 feet in diameter completes one revolution left
every 58 seconds. Its center point is 40 feet above the ground.
a.) Write a sinusoidal function H(t) to model a rider's height
above ground as a function of time t in seconds.
How long does it take a rider to go from the lowest point
of travel to 61 feet above the ground? [First transform your
function to make lowest point correspond to time t = 0.1
b.)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F2816e768-d46c-42f8-b287-986238abcd2a%2F8ff16ee4-0f48-410a-bcaf-acf885b3bd03%2Fl1aeqhx_processed.jpeg&w=3840&q=75)
Transcribed Image Text:2.
A Ferris wheel
70 feet in diameter completes one revolution left
every 58 seconds. Its center point is 40 feet above the ground.
a.) Write a sinusoidal function H(t) to model a rider's height
above ground as a function of time t in seconds.
How long does it take a rider to go from the lowest point
of travel to 61 feet above the ground? [First transform your
function to make lowest point correspond to time t = 0.1
b.)
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