When throwing an object, the distance achieved depends on its initial velocity, v0, and the angle above the horizontal at which the object is thrown, θ. The distance, d, in feet, that describes the range covered is given by d = v02 sin θ cos θ/16, where v0 is measured in feet per second. Solve, You and your friend are throwing a baseball back and forth. If you throw the ball with an initial velocity of v0 = 90 feet per second, at what angle of elevation, θ, to the nearest degree, should you direct your throw so that it can be easily caught by your friend located 200 feet away?
When throwing an object, the distance achieved depends on its initial velocity, v0, and the angle above the horizontal at which the object is thrown, θ. The distance, d, in feet, that describes the range covered is given by d = v02 sin θ cos θ/16, where v0 is measured in feet per second. Solve, You and your friend are throwing a baseball back and forth. If you throw the ball with an initial velocity of v0 = 90 feet per second, at what angle of elevation, θ, to the nearest degree, should you direct your throw so that it can be easily caught by your friend located 200 feet away?
Calculus: Early Transcendentals
8th Edition
ISBN:9781285741550
Author:James Stewart
Publisher:James Stewart
Chapter1: Functions And Models
Section: Chapter Questions
Problem 1RCC: (a) What is a function? What are its domain and range? (b) What is the graph of a function? (c) How...
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When throwing an object, the distance achieved depends on its initial velocity, v0, and the angle above the horizontal at which the object is thrown, θ. The distance, d, in feet, that describes the range covered is given by d = v02 sin θ cos θ/16, where v0 is measured in feet per second.
Solve, You and your friend are throwing a baseball back and forth. If you throw the ball with an initial velocity of v0 = 90 feet per second, at what angle of elevation, θ, to the nearest degree, should you direct your throw so that it can be easily caught by your friend located 200 feet away?
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