to the underside of a wooden shelf which, in turn, is firmly attached to the wall. The mass is given a small vertical displacement, and the system is allowed to oscillate. Electronic data collection apparatus is used to measure the position of the mass, and a graph of position versus time is created. The graph indicates that the system is lightly damped. Students count the number of oscillations that occur until the amplitude has decreased 62.5% of its initial value. From this, it is determined that the damping coefficient is b=2.83 x 10-3 kg/s. How many oscillations did the students count?

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Chapter1: Units, Trigonometry. And Vectors
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volem 9. A 1.97 kg mass is suspended by a spring with a spring constant of 0.394 N/m, and the other end of the spring is affixed
to the underside of a wooden shelf which, in turn, is firmly attached to the wall. The mass is given a small vertical displacement, and the
system is allowed to oscillate. Electronic data collection apparatus is used to measure the position of the mass, and a graph of position versus
time is created. The graph indicates that the system is lightly damped.
Students count the number of oscillations that occur until the amplitude has decreased.
62.5% of its initial value. From this, it is determined that the damping coefficient is
b=2.83 x 10-³ kg/s. How many oscillations did the students count?
N=
Transcribed Image Text:volem 9. A 1.97 kg mass is suspended by a spring with a spring constant of 0.394 N/m, and the other end of the spring is affixed to the underside of a wooden shelf which, in turn, is firmly attached to the wall. The mass is given a small vertical displacement, and the system is allowed to oscillate. Electronic data collection apparatus is used to measure the position of the mass, and a graph of position versus time is created. The graph indicates that the system is lightly damped. Students count the number of oscillations that occur until the amplitude has decreased. 62.5% of its initial value. From this, it is determined that the damping coefficient is b=2.83 x 10-³ kg/s. How many oscillations did the students count? N=
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