If the initial velocity of a projectile is 96 feet per second, then its height in feet is a function of time t in seconds given by the equation h(t)=-16+² + 96t. (a) Find the time t (in seconds) when the projectile achieves its maximum height. sec (b) Find the maximum height (in feet) of the projectile. ft (c) Find the time t (in seconds) when the projectile hits the ground. sec
If the initial velocity of a projectile is 96 feet per second, then its height in feet is a function of time t in seconds given by the equation h(t)=-16+² + 96t. (a) Find the time t (in seconds) when the projectile achieves its maximum height. sec (b) Find the maximum height (in feet) of the projectile. ft (c) Find the time t (in seconds) when the projectile hits the ground. sec
A First Course in Probability (10th Edition)
10th Edition
ISBN:9780134753119
Author:Sheldon Ross
Publisher:Sheldon Ross
Chapter1: Combinatorial Analysis
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
Transcribed Image Text:If the initial velocity of a projectile is 96 feet per second, then its height in feet is a function of time t in seconds given by the equation h(t)=-16+² + 96t.
(a) Find the time t (in seconds) when the projectile achieves its maximum height.
sec
(b) Find the maximum height (in feet) of the projectile.
ft
(c) Find the time t (in seconds) when the projectile hits the ground.
sec
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