An astronaut drops a hammer from rest a vertical distance of 2.0 meters above the surface of the moon. If the acceleration due to gravity on the moon is a(t) = –1.62m s2 · (a) What is the hammer position after 1 second? 1.19 m 2.3 m 1.63 m 1.5 m 0.23 m None of the above/below

Mathematics For Machine Technology
8th Edition
ISBN:9781337798310
Author:Peterson, John.
Publisher:Peterson, John.
Chapter65: Achievement Review—section Six
Section: Chapter Questions
Problem 44AR: Solve these prism and cylinder exercises. Where necessary, round the answers to 2 decimal places...
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An astronaut drops a hammer from rest a vertical distance of 2.0 meters above the
surface of the moon. If the acceleration due to gravity on the moon is
a(t) = –1.62.
m
(a) What is the hammer position after 1 second?
1.19 m
2.3 m
1.63 m
1.5 m
0.23 m
None of the above/below
1.78 m
Transcribed Image Text:An astronaut drops a hammer from rest a vertical distance of 2.0 meters above the surface of the moon. If the acceleration due to gravity on the moon is a(t) = –1.62. m (a) What is the hammer position after 1 second? 1.19 m 2.3 m 1.63 m 1.5 m 0.23 m None of the above/below 1.78 m
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