presented in the table below. Constant Mass vs Varying Force Hanging Mass 1 23 2 50 g 70 g 90 g Weight of Hanging Mass in dynes (A) (B) (C) Average Time to cover 100 cm 1.30 s 1.10 s 0.97 s Acceleration in cm/s² (D) (E) (F) Based on the data, what is the estimated mass (in grams) of the cart?

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The same experiment on Newton's Laws of
Motion was performed. See figure below for the
set-up.
Cart
Weight hanger
The data obtained from the experiment is
presented in the table below.
Constant Mass vs Varying Force
1
2
3
Hanging Mass Weight of Hanging
Mass in dynes
(A)
(B)
(C)
pulley
50 g
70 g
90 g
Average Time to
cover 100 cm
1.30 s
1.10 s
0.97 s
Acceleration in cm/s²
(D)
(E)
(F)
Based on the data, what is the estimated mass
(in grams) of the cart?
Transcribed Image Text:The same experiment on Newton's Laws of Motion was performed. See figure below for the set-up. Cart Weight hanger The data obtained from the experiment is presented in the table below. Constant Mass vs Varying Force 1 2 3 Hanging Mass Weight of Hanging Mass in dynes (A) (B) (C) pulley 50 g 70 g 90 g Average Time to cover 100 cm 1.30 s 1.10 s 0.97 s Acceleration in cm/s² (D) (E) (F) Based on the data, what is the estimated mass (in grams) of the cart?
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