15. Using the answer for question 14, and given a cart mass of M = 3.0 kg, the hanging mass, m (kg) is: +x m +X O 1.0 O 2.0 O 1.65 0.50 O 0.33 O 2.75 O 2.33 O 1.33

Glencoe Physics: Principles and Problems, Student Edition
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ISBN:9780078807213
Author:Paul W. Zitzewitz
Publisher:Paul W. Zitzewitz
Chapter7: Gravitation
Section: Chapter Questions
Problem 57A
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15. Using the answer for question 14,
and given a cart mass of M = 3.0 kg,
the hanging mass, m (kg) is:
+x
+X
О 1.0
O 2.0
O 1.65
0.50
О 0.33
O 2.75
O 2.33
O 1.33
Transcribed Image Text:15. Using the answer for question 14, and given a cart mass of M = 3.0 kg, the hanging mass, m (kg) is: +x +X О 1.0 O 2.0 O 1.65 0.50 О 0.33 O 2.75 O 2.33 O 1.33
14. The measured velocity (m/s) of
either masses of the modified
Atwood's machine for various times is
given in the below table. Using Excel
to graph the data, and based on the
slope of velocity vs. time graph, the
measured acceleration (m/s2) of
either masses is:
+x
m
+X
t(sec) v(m/s)
0.5
1.23
1
2.49
|1.5
3.65
2
|4.85
2.5
6.13
3
7.38
O 2.45
O 0.0013
Transcribed Image Text:14. The measured velocity (m/s) of either masses of the modified Atwood's machine for various times is given in the below table. Using Excel to graph the data, and based on the slope of velocity vs. time graph, the measured acceleration (m/s2) of either masses is: +x m +X t(sec) v(m/s) 0.5 1.23 1 2.49 |1.5 3.65 2 |4.85 2.5 6.13 3 7.38 O 2.45 O 0.0013
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