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Incline 1 Length of incline 1 (hypotenuse, L) = 2 m Height of Incline 1 (opposite side, h) = 0.08 m Angle of Incline 1,

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Incline 1 Length of incline 1 (hypotenuse, L) = 2 m Height of Incline 1 (opposite side, h) = 0.08 m Angle of Incline 1, 01 = sin-1 (h/L) = 2.29 degrees Data Table 1 Trial Distance Object Experimental Traveled, s Time, At acceleration, a* 0 0.296066 9.798826587 2 0.05 0.341511 9.720678582 3 0.1 0.375123 9.800022654 4 0.15 0.403104 9.789226843 Average Experimental Acceleration, a1 in m/s2 9.7771886 Experimental Acceleration due to Gravity, g1 8.996848395 in m/$2Incline 2 Length of incline 2 (hypotenuse) = 2 m Height of Incline 2 (opposite side) = 0.14 m Angle of Incline 2, 92 = sinl (h/L) = 4.014 degrees Data Table 2 Trial Distance Object Time, At Experimental Traveled, s acceleration, a* 1 0.05 0.697667 9762292054 2 0.1 0.735091 9.708966035 3 0.15 0.765146 9.672849109 4 0.2 0.790999 9.748174744 Average Experimental Acceleration, a2 in m/s2 9.72307048 Experimental Acceleration due to Gravity, 91 in m/s2 9.763326543 *Show Sample Calculation [Note 3 = [1/2) a til and [a = g 5mg] Incline 3 Length of incline 3 (hypotenuse) = 2 rn Height of Incline 3 (opposite side) = 0.255 rn Angle of Incline 3, 03 = sin*l (h/L) = 7.33 degrees Data Table 3 Trial Distance Object Time, At Experimental Traveled, s W acceleration, a* 1 0.05 0.485772 9.638364361 2 0.1 0.517118 9692832424 3 0.15 0.543768 9.564127464 4 0.2 0.567391 9.504324371 Average Experimental Acceleration, a2 in m/s2 9.5999l2l 5 Experimental Acceleration due to Gravity, 91 in m/s2 9.480639777 *Show Sample Calculation [Note 3 = [1/2) a t2; and [a = 9 me]

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