The height of a ball that is launched from the ground is given by taking -16 times the time in seconds (t) squared and adding it to the product of the time (t) and the initial speed of the ball. If the initial speed is 100 feet per second, which equation best represents the relationship between the time in seconds (t ) and the height of the ball (h )?
The height of a ball that is launched from the ground is given by taking -16 times the time in seconds (t) squared and adding it to the product of the time (t) and the initial speed of the ball. If the initial speed is 100 feet per second, which equation best represents the relationship between the time in seconds (t ) and the height of the ball (h )?
Elementary Algebra
17th Edition
ISBN:9780998625713
Author:Lynn Marecek, MaryAnne Anthony-Smith
Publisher:Lynn Marecek, MaryAnne Anthony-Smith
Chapter8: Rational Expressions And Equations
Section8.9: Use Direct And Inverse Variation
Problem 8.177TI: The distance an object falls is directly proportional to the square of the time it falls. A ball...
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Solve this problem and have the correct answer along with the answer choice.
![The height of a ball that is launched from the ground is given by taking –16 times the time in seconds (t) squared and adding it to the product of the time (t) and the initial speed of the ball.
If the initial speed is 100 feet per second, which equation best represents the relationship between the time in seconds (t ) and the height of the ball (h )?
O h= -16t3 + 100
O h= -16t2 – 100
O h = -16t3 – 100t
O h = -16t2 + 100t](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F8ecfc04e-4736-4bcd-8908-2dc4602053a1%2Faa262b77-2849-448c-aaeb-ec06ddfd56b0%2Fy9832d_processed.png&w=3840&q=75)
Transcribed Image Text:The height of a ball that is launched from the ground is given by taking –16 times the time in seconds (t) squared and adding it to the product of the time (t) and the initial speed of the ball.
If the initial speed is 100 feet per second, which equation best represents the relationship between the time in seconds (t ) and the height of the ball (h )?
O h= -16t3 + 100
O h= -16t2 – 100
O h = -16t3 – 100t
O h = -16t2 + 100t
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