In the projectile motion experiment, a steel ball is rolled down a track starting from a height h above end of the track. The ball flies off of the end of the track and then strikes the floor at some horizontal distance d out from the projection of the end of the track down onto the floor. The apparatus is moved to a different table where the end of the track is now 2.5 times h. How does the new horizontal distance compare to the previous? The new distance is 1.5 d. The new distance is 1.6 d. The new distance is 1.0 d. The new distance is 2.0 d. The new distance is 1.2 d. The new distance is 1.4 d.

Glencoe Physics: Principles and Problems, Student Edition
1st Edition
ISBN:9780078807213
Author:Paul W. Zitzewitz
Publisher:Paul W. Zitzewitz
Chapter6: Motion In Two Dimensions
Section6.3: Relative Velocity
Problem 27PP
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In the projectile motion experiment, a steel ball is rolled down a track starting
from a height h above end of the track. The ball flies off of the end of the track
and then strikes the floor at some horizontal distance d out from the
projection of the end of the track down onto the floor. The apparatus is
moved to a different table where the end of the track is now 2.5 times h. How
does the new horizontal distance compare to the previous?
The new distance is 1.5 d.
The new distance is 1.6 d.
The new distance is 1.0 d.
The new distance is 2.0 d.
The new distance is 1.2 d.
The new distance is 1.4 d.
Transcribed Image Text:In the projectile motion experiment, a steel ball is rolled down a track starting from a height h above end of the track. The ball flies off of the end of the track and then strikes the floor at some horizontal distance d out from the projection of the end of the track down onto the floor. The apparatus is moved to a different table where the end of the track is now 2.5 times h. How does the new horizontal distance compare to the previous? The new distance is 1.5 d. The new distance is 1.6 d. The new distance is 1.0 d. The new distance is 2.0 d. The new distance is 1.2 d. The new distance is 1.4 d.
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