Let us suppose that one of the fireworks is launched from the top of the building with an initial upward velocity of 150 ft/sec (correct velocity) and the building has a height of 35 feet. Use the quadratic equation: h(t) = -16r + vot + ho What is the equation for this situation? ... When, in seconds s, will the firework land if it does not explode? Give answer to a tenth of a decimal (ex: 14.3 sec)

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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What is the equation for this situation?

Let us suppose that one of the fireworks is launched
from the top of the building with an initial upward
velocity of 150 ft/sec (correct velocity) and the building
has a height of 35 feet.
Use the quadratic equation:
h(t) = -16 + vot + ho
What is the equation for this situation?
When, in seconds s, will the firework land if it does not
explode? Give answer to a tenth of a decimal (ex: 14.3
sec)
You can solve this Algebraically (factoring will likely
NOT work so the Quadratic Formula will prove helpful).
Transcribed Image Text:Let us suppose that one of the fireworks is launched from the top of the building with an initial upward velocity of 150 ft/sec (correct velocity) and the building has a height of 35 feet. Use the quadratic equation: h(t) = -16 + vot + ho What is the equation for this situation? When, in seconds s, will the firework land if it does not explode? Give answer to a tenth of a decimal (ex: 14.3 sec) You can solve this Algebraically (factoring will likely NOT work so the Quadratic Formula will prove helpful).
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