A water fountain jet shoots short spurts of water over a walkway. The water spurts reach a maximum height, then come down into a pond of water on the other side of the walkway. The height above the jet, h, of a spurt of water t seconds after leaving the jet can be found by the function h(t) = - 16t + 48t. Find the time it takes for the spurt of water to return to the jet's height; that is, when h(t) = 0. The spurt of water returns (Type an integer or a decimal.) seconds after the shot.

Algebra and Trigonometry (6th Edition)
6th Edition
ISBN:9780134463216
Author:Robert F. Blitzer
Publisher:Robert F. Blitzer
ChapterP: Prerequisites: Fundamental Concepts Of Algebra
Section: Chapter Questions
Problem 1MCCP: In Exercises 1-25, simplify the given expression or perform the indicated operation (and simplify,...
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A water fountain jet shoots short spurts of water over a walkway. The water spurts reach a maximum height, then come down into a pond of water on the other side of
the walkway. The height above the jet, h, of a spurt of water t seconds after leaving the jet can be found by the function h(t) = - 16t + 48t. Find the time it takes for the
spurt of water to return to the jet's height; that is, when h(t) = 0.
The spurt of water returns
(Type an integer or a decimal.)
seconds after the shot.
Transcribed Image Text:A water fountain jet shoots short spurts of water over a walkway. The water spurts reach a maximum height, then come down into a pond of water on the other side of the walkway. The height above the jet, h, of a spurt of water t seconds after leaving the jet can be found by the function h(t) = - 16t + 48t. Find the time it takes for the spurt of water to return to the jet's height; that is, when h(t) = 0. The spurt of water returns (Type an integer or a decimal.) seconds after the shot.
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