Determining the average time of flight at a variable height Vertical Time, t Distance Ay (m) (Arrange from smallest to Trial 1 Trial 2 Trial 3 longest distance) 0.455 00.37 s 00.35 s 00.38 s 0.515 00.38 s 00.41 s 00.38 s 0.755 00.41 s 00.47 s 00.38 s 0.810 00.40 s 00.41 s 00.45 s 0.840 00.41 s 00.57 s 00.43 s

University Physics Volume 2
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Chapter16: Electromagnetic Waves
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Problem 78P: The prefix “mega” (M) and “kilo” (k), when referring to amounts of computer data, refer to factors...
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Determining the value of acceleration due to gravity

Determining the average time of flight at a variable height
Vertical
Time, t
Distance Ay
(m)
(Arrange from
smallest to
Trial 1
Trial 2
Trial 3
longest
distance)
0.455
00.37 s
00.35 s
00.38 s
0.515
00.38 s
00.41 s
00.38 s
0.755
00.41 s
00.47 s
00.38 s
0.810
00.40 s
00.41 s
00.45 s
0.840
00.41 s
00.57 s
00.43 s
Transcribed Image Text:Determining the average time of flight at a variable height Vertical Time, t Distance Ay (m) (Arrange from smallest to Trial 1 Trial 2 Trial 3 longest distance) 0.455 00.37 s 00.35 s 00.38 s 0.515 00.38 s 00.41 s 00.38 s 0.755 00.41 s 00.47 s 00.38 s 0.810 00.40 s 00.41 s 00.45 s 0.840 00.41 s 00.57 s 00.43 s
A
R squared
Coefficients
Acceleration due to gravity from
quadratic equation, m/s²
Percent Error (%)
Transcribed Image Text:A R squared Coefficients Acceleration due to gravity from quadratic equation, m/s² Percent Error (%)
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