Calculate the theoretical and experimental acceleration of the following: Distance (m) : 0.8 Suspended mass m, (g) = 90 Time t (s) Acceleration (m/s) Added Mass on the Cart m, Mass of the cart (g) Trial 1 Trial 2 Trial 3 Average (g) Theoretical Experimental 132.4 463.9 1.47 1.34 1.34 Y O 0.84 m/s^2, 1.43 m/s^2 O 3.06 m/s^2, 1.29 m/s^2 O 0.84 m/s^2, 1.29 m/s^2 O 3.06 m/s^2, 1.38 m/s^2

University Physics Volume 1
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Author:William Moebs, Samuel J. Ling, Jeff Sanny
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Chapter6: Applications Of Newton's Laws
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Calculate the theoretical and experimental acceleration of the following:
Distance (m) : 0.8
Suspended mass m, (g) = 90
Time t (s)
Acceleration (m/s)
Added Mass on the Cart m, Mass of the cart (g)
Trial 1 Trial 2 Trial 3
Average
(g)
Theoretical Experimental
132.4
463.9
1.47
1.34
1.34
Y
O 0.84 m/s^2, 1.43 m/s^2
O 3.06 m/s^2, 1.29 m/s^2
O 0.84 m/s^2, 1.29 m/s^2
O 3.06 m/s^2, 1.38 m/s^2
Transcribed Image Text:Calculate the theoretical and experimental acceleration of the following: Distance (m) : 0.8 Suspended mass m, (g) = 90 Time t (s) Acceleration (m/s) Added Mass on the Cart m, Mass of the cart (g) Trial 1 Trial 2 Trial 3 Average (g) Theoretical Experimental 132.4 463.9 1.47 1.34 1.34 Y O 0.84 m/s^2, 1.43 m/s^2 O 3.06 m/s^2, 1.29 m/s^2 O 0.84 m/s^2, 1.29 m/s^2 O 3.06 m/s^2, 1.38 m/s^2
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