We test the time it takes an object to fall 10 meters, comparing a theoretical prediction...
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We test the time it takes an object to fall 10 meters, comparing a theoretical prediction with a measurement. We measure using video at 50 fps, and we use the equation 2d t for our prediction. We use a meterstick that measures down to 1 mm to check that we are dropping from 10 m. What are the predicted and measured uncertainties in time? Measured: 7 x 10^(-5) s/ Predicted: None Measured: 7 x 10^(-5) s / Predicted: 0.02 s O Measured: 0.02 s / Predicted: 7 x 10^(-5) s Measured: 0.02 s / Predicted: 1.43 s O Not enough information We test the time it takes an object to fall 10 meters, comparing a theoretical prediction with a measurement. We measure using video at 50 fps, and we use the equation 2d t for our prediction. We use a meterstick that measures down to 1 mm to check that we are dropping from 10 m. What are the predicted and measured uncertainties in time? Measured: 7 x 10^(-5) s/ Predicted: None Measured: 7 x 10^(-5) s / Predicted: 0.02 s O Measured: 0.02 s / Predicted: 7 x 10^(-5) s Measured: 0.02 s / Predicted: 1.43 s O Not enough information
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Related Book For
Finite Mathematics and Its Applications
ISBN: 978-0134768632
12th edition
Authors: Larry J. Goldstein, David I. Schneider, Martha J. Siegel, Steven Hair
Posted Date:
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