
S t a t i c s S y s t e m
E x p . 9 : S i m p l e H a r m o n i c M o t i o n – M a s s o n a S p r i n g
®
48
012-12876B
3.
Pull the mass hanger down and release it smoothly. Let it oscillate a few times before taking any measure-
ments. When the oscillations are smooth and regular, measure the time for at least ten complete oscillations
(down-up-down). If possible, measure the time for as many oscillations as you can before the amplitude of the
oscillations becomes too small. Record the number of oscillations and the total time.
4.
Calculate and record the Measured Period,
T
measured
, by dividing the total time by the number of oscillations.
5.
Repeat the measurement for the 125 g mass five times. Calculate and record the Average Measured Period.
6.
Use
M
and
k
to calculate the Theoretical Period,
T
theoretical
, and record the result.
7.
Repeat the procedure using masses of 175 g and 225 g (total mass including the mass hanger).
Data Table
Questions
1.
How well does the theoretical value for the period of oscillation compare to the measured period of oscilla-
tion?
2.
Does the equation for the period of a mass on a spring provide a good mathematical model for the physical
reality? Why or why not?
Mass (kg)
Oscillations
Total Time (s)
Measured Period (s)
Theoretical Period (s)
0.125 kg
0.125 kg
0.125 kg
0.125 kg
0.125 kg
Average Measured Period (s)
0.175 kg
0.175 kg
0.175 kg
0.175 kg
0.175 kg
Average Measured Period (s)
0.225 kg
0.225 kg
0.225 kg
0.225 kg
0.225 kg
Average Measured Period (s)
T
2
M
k
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Summary of Contents for ME-9502
Page 1: ... PASCO Mechanics Statics System ME 9502 Instruction Manual 012 12876B 012 12876 ...
Page 4: ... Statics System iv 012 12876B ...
Page 20: ...Statics System Exp 2 Adding Forces Resultants and Equilibriants 16 012 12876B ...
Page 24: ...Statics System Exp 3 Resolving Forces Components 20 012 12876B ...
Page 28: ...Statics System Exp 4 Torque Parallel Forces 24 012 12876B ...
Page 32: ...Statics System Exp 5A Center of Mass 28 012 12876B ...
Page 36: ...Statics System Exp 5B Equilibrium of Physical Bodies 32 012 12876B ...
Page 44: ...Statics System Exp 7 The Inclined Plane 40 012 12876B ...
Page 50: ...Statics System Static Friction on an Inclined Plane 46 012 12876B ...
Page 60: ...Statics System Exp 10 Simple Harmonic Motion The Simple Pendulum 56 012 12876B ...
Page 66: ...Statics System Exp 11A Simple Harmonic Motion Physical Pendulum 62 012 12876B ...
Page 70: ...Statics System Exp 11B Minimum Period of a Physical Pendulum 66 012 12876B ...
Page 76: ...Statics System Exp 11C Simple Harmonic Motion Beam on a Spring 72 012 12876B ...
Page 84: ...Statics System Exp 13 Simple Machines The Inclined Plane 80 012 12876B ...
Page 94: ...Statics System Technical Support 90 012 12876B ...