(4) In an experiment of a simple pendulum, measurements show that the pendulum has length L...
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(4) In an experiment of a simple pendulum, measurements show that the pendulum has length L = 0.397 ± 0.006 m, mass M = 0.3172 ± 0.0002 kg, and period Texp = 1.274 ± 0.005 s. Take g = 9.8 m/s². i. Use the measured length L to predict the theoretical pendulum period Ttheo with a range of error (use the error propagation method you learned in Lab 1). ii. Compute the percentage difference (as defined in Lab 1) between the measured value Texp and the predicted value theo. (4) In an experiment of a simple pendulum, measurements show that the pendulum has length L = 0.397 ± 0.006 m, mass M = 0.3172 ± 0.0002 kg, and period Texp = 1.274 ± 0.005 s. Take g = 9.8 m/s². i. Use the measured length L to predict the theoretical pendulum period Ttheo with a range of error (use the error propagation method you learned in Lab 1). ii. Compute the percentage difference (as defined in Lab 1) between the measured value Texp and the predicted value theo.
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L 0397 0006 m M 03172 1 000027 1274 0005 sec Texp i We know time perio... View the full answer
Related Book For
Stats Data and Models
ISBN: 978-0321986498
4th edition
Authors: Richard D. De Veaux, Paul D. Velleman, David E. Bock
Posted Date:
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