Suppose that an airplane is asked to stay in a holding pattern near an airport. The distance of the plane to the airport is described by the following. d (1) = 138+61 sin 9. In this equation, d (t) is the distance of the plane to the airport (in miles), and t is the time (in minutes) after the plane enters the holding pattern. During the first 9 minutes after the plane enters the holding pattern, when will the plane be 170 miles from the airport? 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, enter additional answers with the "or" button.) t = I minutes Dor O
Suppose that an airplane is asked to stay in a holding pattern near an airport. The distance of the plane to the airport is described by the following. d (1) = 138+61 sin 9. In this equation, d (t) is the distance of the plane to the airport (in miles), and t is the time (in minutes) after the plane enters the holding pattern. During the first 9 minutes after the plane enters the holding pattern, when will the plane be 170 miles from the airport? 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, enter additional answers with the "or" button.) t = I minutes Dor O
Algebra & Trigonometry with Analytic Geometry
13th Edition
ISBN:9781133382119
Author:Swokowski
Publisher:Swokowski
Chapter7: Analytic Trigonometry
Section7.6: The Inverse Trigonometric Functions
Problem 74E
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