Determine the timing a pendulum swing or a drop time

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Reference no: EM13968853

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Question:

The acceleration due to gravity determine the timing a pendulum swing or a drop time of a dropped object (assuming ideal behavior in a vacuum). The relationships are described with the equations below. The average value for g on earth is 9.80665 m/s2. Set up a pendulum (a heavy object on a light string) or drop a dense object from a measured height. Use the stopwatch on your smartphone to time the swing or drop time. Repeat this 20 times and record the 20 measurements.

Measurment of Gravity

Pendulum

T = period(sec)(there and back); L = Length (m)' g = 9.81 m/s2

Period (T) = 2Π√L/g

g = (2Π/T)2L

Falling object

T = time(sec); H = height(m); g = 9.81 m/s2

H = 1/2gt2

g = 2.H/t2

A) Assuming that your measurement of height is perfectly accurate and has no uncertainty, calculate the expected time in your experiment. For example t=sqrt(2H/g) for a dropped object. g=9.80665 m/s2

B) Assume that this is a new experiment that you have never done before. Plot a histogram and determine if your data are Gaussian.

C) Compare your measurements with the expected time calculated in A. Is the null hypothesis supported or not supported by your measurements?

D) What do you conclude about the accuracy of your measurement technique?

Reference no: EM13968853

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