What is the relationship of the number of segments to the period of wave and period of speed?

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What is the relationship of the number of segments to the period of wave and period of speed?
DATA AND RESULTS
Part I. Speed of Transverse Waves
Mass of String: 2.22 kg
Frequency, f
(vib/s)
12
No. of
Segments
1
2
3
24
36
Wavelength, A Length, L
(m)
(m)
2.7 m
1.35 m
1.35 m
0.9 m
1.35 m
1.35 m
Force, F
(N)
1.73
1.71
1.72
Wave Velocity, v (m/s)
Experimental Theoretical
32.4
32.43
32.4
32.4
32.25
32.25
Percent
Difference
0.09%
0.47%
0.47%
Transcribed Image Text:DATA AND RESULTS Part I. Speed of Transverse Waves Mass of String: 2.22 kg Frequency, f (vib/s) 12 No. of Segments 1 2 3 24 36 Wavelength, A Length, L (m) (m) 2.7 m 1.35 m 1.35 m 0.9 m 1.35 m 1.35 m Force, F (N) 1.73 1.71 1.72 Wave Velocity, v (m/s) Experimental Theoretical 32.4 32.43 32.4 32.4 32.25 32.25 Percent Difference 0.09% 0.47% 0.47%
Part II. Speed of Longitudinal Waves
Frequency
90
100
Diameter of
the tube, d
(m)
0.145
0.145
Length of the
air column, L
(m)
0.93
0.80
Wavelength
of sound, A
(m)
3.87
3.35
Room
Temperature
T(°C)
26.00
26.00
Experimental
Speed of
sound,
v (m/s)
348.30
335.00
Calculated
Speed of
sound,
v (m/s)
347.31
347.31
Percent
Error
0.29%
3.54%
Transcribed Image Text:Part II. Speed of Longitudinal Waves Frequency 90 100 Diameter of the tube, d (m) 0.145 0.145 Length of the air column, L (m) 0.93 0.80 Wavelength of sound, A (m) 3.87 3.35 Room Temperature T(°C) 26.00 26.00 Experimental Speed of sound, v (m/s) 348.30 335.00 Calculated Speed of sound, v (m/s) 347.31 347.31 Percent Error 0.29% 3.54%
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