A hawk flying at 16 m/s at an altitude of 170 m accidentally drops its prey. The parabolic trajectory of the falling prey is described by the equation y = 170 – x²/48 until it hits the ground, where y is the height above the ground and x is the horizontal distance traveled in meters. Let D be the distance traveled by the prey from the time it is dropped until the time it hits the ground. D = dx , where a = and b = Therefore the distance traveled by the prey is equal to

Algebra & Trigonometry with Analytic Geometry
13th Edition
ISBN:9781133382119
Author:Swokowski
Publisher:Swokowski
Chapter11: Topics From Analytic Geometry
Section11.2: Ellipses
Problem 34E
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Book Problem 33
A hawk flying at 16 m/s at an altitude of 170 m accidentally drops its prey. The parabolic trajectory of the falling prey is described by
170 – x²148 until it hits the ground, where y is the height above the ground and x is the horizontal distance
the equation y =
traveled in meters.
Let D be the distance traveled by the prey from the time it is dropped until the time it hits the ground.
D = Sa
dx , where a =
and b =
Therefore the distance traveled by the prey is equal to
Transcribed Image Text:(1 point) Book Problem 33 A hawk flying at 16 m/s at an altitude of 170 m accidentally drops its prey. The parabolic trajectory of the falling prey is described by 170 – x²148 until it hits the ground, where y is the height above the ground and x is the horizontal distance the equation y = traveled in meters. Let D be the distance traveled by the prey from the time it is dropped until the time it hits the ground. D = Sa dx , where a = and b = Therefore the distance traveled by the prey is equal to
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