Consider the following data for the table below: • Distance travelled by the cart = 108 cm • Height of inclination = 20 cm • Average Time of Travel = 1.041 s Acceleration down the Inclined Plane Height of Time of Travel (s) Acceleration (m/s²) % sin Ꮎ Track (cm) Trial 1 Trial 2 Trial 3 Average Experimental Theoretical Error (A) (B) (C) (D) Length of Track: Calculate the percent error between the theoretical and experimental acceleration of the cart down the incline in (D). O 14.3% O 8.95% O 9.37% O 9.83%

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Chapter3: Vectors
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Consider the following data for the table below:
• Distance travelled by the cart = 108 cm
• Height of inclination = 20 cm
• Average Time of Travel = 1.041 s
Acceleration down the Inclined Plane
Height of
Time of Travel (s)
Acceleration (m/s²)
sin e
%
Error
Track (cm) Trial 1 Trial 2 Trial 3 Average
Experimental Theoretical
(A)
(B)
(C)
(D)
Length of Track:
Calculate the percent error between the theoretical and experimental acceleration of the
cart down the incline in (D).
14.3%
8.95%
O 9.37%
O 9.83%
Transcribed Image Text:Consider the following data for the table below: • Distance travelled by the cart = 108 cm • Height of inclination = 20 cm • Average Time of Travel = 1.041 s Acceleration down the Inclined Plane Height of Time of Travel (s) Acceleration (m/s²) sin e % Error Track (cm) Trial 1 Trial 2 Trial 3 Average Experimental Theoretical (A) (B) (C) (D) Length of Track: Calculate the percent error between the theoretical and experimental acceleration of the cart down the incline in (D). 14.3% 8.95% O 9.37% O 9.83%
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