The next few questions challenge you to figure out the acceleration due to gravity (g ) on various hypothetical alien planets. On Planet #1, you drop a stone from rest, 83.2 m above the ground, and the stone hits the ground 3.04 s later. What is the value of g on Planet #1? 18.01 m/s^2 9.00 m/s^2 27.37 m/s^2 54.74 m/s^2

Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter2: One Dimensional Motion
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The next few questions challenge you to figure out the acceleration due to gravity (g
) on various hypothetical alien planets. On Planet #1, you drop a stone from rest,
83.2 m above the ground, and the stone hits the ground 3.04 s later. What is the
value of g on Planet #1?
18.01 m/s^2
9.00 m/s^2
27.37 m/s^2
54.74 m/s^2
Transcribed Image Text:The next few questions challenge you to figure out the acceleration due to gravity (g ) on various hypothetical alien planets. On Planet #1, you drop a stone from rest, 83.2 m above the ground, and the stone hits the ground 3.04 s later. What is the value of g on Planet #1? 18.01 m/s^2 9.00 m/s^2 27.37 m/s^2 54.74 m/s^2
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