An object is launched directly in the air at a speed of 16 feet per second from a platform located 20 feet above the ground. The position of the object can be modeled using the function f(t) = -16t2 + 16t + 20, where t is the time in seconds and f(t) is the height, in feet, of the object. What is the maximum height, in feet, that the object will reach?

Intermediate Algebra
19th Edition
ISBN:9780998625720
Author:Lynn Marecek
Publisher:Lynn Marecek
Chapter9: Quadratic Equations And Functions
Section9.6: Graph Quadratic Functions Using Properties
Problem 9.104TI: A path of a toy rocket thrown upward from the ground at a rate of 208 ft/sec is modeled by the...
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An object is launched directly in the air at a speed of
16 feet per second from a platform located 20 feet
above the ground. The position of the object can be
modeled using the function
f(t) = –16t2 + 16t + 20, where t is the time in
seconds and f(t) is the height, in feet, of the object.
What is the maximum height, in feet, that the object
-
will reach?
Provide your answer below:
feet
Transcribed Image Text:An object is launched directly in the air at a speed of 16 feet per second from a platform located 20 feet above the ground. The position of the object can be modeled using the function f(t) = –16t2 + 16t + 20, where t is the time in seconds and f(t) is the height, in feet, of the object. What is the maximum height, in feet, that the object - will reach? Provide your answer below: feet
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