An airplane is flying at an elevation of 6.6 miles on a horizontal flight path that will take it directly over a radar tracking station. Let x represent the distance (in miles) between the radar station and the point on the ground just below the plane. If θ is increasing at a rate of 1.5 degrees per minute when x is 28 miles, what is the speed of the plane? The plane is traveling___________________ miles per hour.
An airplane is flying at an elevation of 6.6 miles on a horizontal flight path that will take it directly over a radar tracking station. Let x represent the distance (in miles) between the radar station and the point on the ground just below the plane. If θ is increasing at a rate of 1.5 degrees per minute when x is 28 miles, what is the speed of the plane? The plane is traveling___________________ miles per hour.
Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
Problem 1RQ
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An airplane is flying at an elevation of 6.6 miles on a horizontal flight path that will take it directly over a radar tracking station. Let x represent the distance (in miles) between the radar station and the point on the ground just below the plane. If θ is increasing at a rate of 1.5 degrees per minute when x is 28 miles, what is the speed of the plane?
The plane is traveling___________________ miles per hour.
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