Suppose at the height above ground of a person sitting on a Ferris wheel is described by the following. h(t)= 18.7-16.6 cos 2π In this equation, h() is the height above ground (in meters) and 7 is the time (in minutes). The ride begins at 1=0 minutes. During the first 5 minutes of the ride, when will the person be 27 meters above the ground? Do not round any intermediate computations, and round your answer(s) to the nearest hundredth of a minute. (If there is more than one answer, en additional answers with the "or" button.)
Suppose at the height above ground of a person sitting on a Ferris wheel is described by the following. h(t)= 18.7-16.6 cos 2π In this equation, h() is the height above ground (in meters) and 7 is the time (in minutes). The ride begins at 1=0 minutes. During the first 5 minutes of the ride, when will the person be 27 meters above the ground? Do not round any intermediate computations, and round your answer(s) to the nearest hundredth of a minute. (If there is more than one answer, en additional answers with the "or" button.)
University Physics Volume 1
18th Edition
ISBN:9781938168277
Author:William Moebs, Samuel J. Ling, Jeff Sanny
Publisher:William Moebs, Samuel J. Ling, Jeff Sanny
Chapter2: Vectors
Section: Chapter Questions
Problem 41P: A trapper walks a 5.0-lan straight-line distance from her cabin to the lake, as shown in the...
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