For this exercise, use the position function s(t) = -4.9t + 360, which gives the height (in meters) of an object that has fallen for t seconds from a height of 360 meters. The velocity at time t = a seconds is given by s(a) - s(t) lim t-a a - t When will the object hit the ground? At what velocity, v, will the object impact the ground? t = V = m/s

Glencoe Algebra 1, Student Edition, 9780079039897, 0079039898, 2018
18th Edition
ISBN:9780079039897
Author:Carter
Publisher:Carter
Chapter9: Quadratic Functions And Equations
Section9.6: Solving Quadratic Equations By Using The Quadratic Formula
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When will the object hit the ground? At what velocity, v, will the object impact the ground?

For this exercise, use the position function s(t) = -4.9t + 360, which gives the height (in meters) of an object that has fallen for t seconds from a height of 360 meters. The velocity at time
t = a seconds is given by
s(a) - s(t)
lim
t-a
a - t
When will the object hit the ground? At what velocity, v, will the object impact the ground?
t =
V =
m/s
Transcribed Image Text:For this exercise, use the position function s(t) = -4.9t + 360, which gives the height (in meters) of an object that has fallen for t seconds from a height of 360 meters. The velocity at time t = a seconds is given by s(a) - s(t) lim t-a a - t When will the object hit the ground? At what velocity, v, will the object impact the ground? t = V = m/s
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