PRINTER VERSION 1 BACK NEXT Chapter 07, Problem 007 A 4.6 kg body is at rest on a frictionless horizontal air track when a constant horizontal force F acting in the positive direction of an x axis along the track is applied to the body. A stroboscopic graph of the position of the body as it slides to the right is shown in the figure. The force F is applied to the body at t = 0, and the graph records the position of the body at 0.50 s intervals. How much work is done on the body by the applied force F between t = 0 and t = 1.8 s? rt=0 0.5 s -1.0s 1.5 s 2.0 s- 0.2 0.4 0.6 0,8 x (m) Number Units the tolerance is +/-2% Click if you would like to Show Work for this question: Open Show Work Question Attempts: Unlimited SAVE FOR LATER SUBMIT ANSWER e to search 6:53 PM ENG 远

College Physics
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ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
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Chapter 07, Problem 007
A 4.6 kg body is at rest on a frictionless horizontal air track when a constant horizontal force F acting in the positive direction of an x axis along the track is applied to the
body. A stroboscopic graph of the position of the body as it slides to the right is shown in the figure. The force F is applied to the body at t = 0, and the graph records the
position of the body at 0.50 s intervals. How much work is done on the body by the applied force F between t = 0 and t = 1.8 s?
rt=0
0.5 s
-1.0s
1.5 s
2.0 s-
0.2
0.4
0.6
0,8
x (m)
Number
Units
the tolerance is +/-2%
Click if you would like to Show Work for this question: Open Show Work
Question Attempts: Unlimited
SAVE FOR LATER
SUBMIT ANSWER
e to search
6:53 PM
ENG
3/30/2021
ASUS
15
ghome
10end
Pgup
12Pgdn
pause
bregk
prt sc
insert
delete
23
3.
8.
9.
backspace
Transcribed Image Text:PRINTER VERSION 1 BACK NEXT Chapter 07, Problem 007 A 4.6 kg body is at rest on a frictionless horizontal air track when a constant horizontal force F acting in the positive direction of an x axis along the track is applied to the body. A stroboscopic graph of the position of the body as it slides to the right is shown in the figure. The force F is applied to the body at t = 0, and the graph records the position of the body at 0.50 s intervals. How much work is done on the body by the applied force F between t = 0 and t = 1.8 s? rt=0 0.5 s -1.0s 1.5 s 2.0 s- 0.2 0.4 0.6 0,8 x (m) Number Units the tolerance is +/-2% Click if you would like to Show Work for this question: Open Show Work Question Attempts: Unlimited SAVE FOR LATER SUBMIT ANSWER e to search 6:53 PM ENG 3/30/2021 ASUS 15 ghome 10end Pgup 12Pgdn pause bregk prt sc insert delete 23 3. 8. 9. backspace
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