A projectile is launched into the air from the ground. The table shows the height of the projectile, h(t), at different times. Projectile Height Height (meters) Time (seconds) 1,353 10 2,460 15 3,323 20 3,940 25 4,313 30 4,440 35 4,323 Based on the table, which function can best be used to model this situation? A h(t) = 99t² + 858 %3D B h(t) = -4.9t2+ 295t + 0.6 %3D Ch(t) = -4.9t²+ 295t + 2 D h(t) = 99t² + 1,470.3 O A OB C O D

Algebra & Trigonometry with Analytic Geometry
13th Edition
ISBN:9781133382119
Author:Swokowski
Publisher:Swokowski
Chapter5: Inverse, Exponential, And Logarithmic Functions
Section5.1: Inverse Functions
Problem 25E
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A projectile is launched into the air from the ground. The table shows the height of the
projectile, h(t), at different times.
Projectile Height
Time
Height
(meters)
(seconds)
1,353
10
2,460
15
3,323
20
3,940
25
4,313
30
4,440
35
4,323
Based on the table, which function can best be used to model this situation?
A h(t) = 99t2+ 858
B h(t) = -4.9t²+ 295t + 0.6
C h(t) = -4.9t²+ 295t + 2
D h(t) = 99t²+1,470.3
A
Transcribed Image Text:A projectile is launched into the air from the ground. The table shows the height of the projectile, h(t), at different times. Projectile Height Time Height (meters) (seconds) 1,353 10 2,460 15 3,323 20 3,940 25 4,313 30 4,440 35 4,323 Based on the table, which function can best be used to model this situation? A h(t) = 99t2+ 858 B h(t) = -4.9t²+ 295t + 0.6 C h(t) = -4.9t²+ 295t + 2 D h(t) = 99t²+1,470.3 A
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