1. Using the speed of sound corrected for room temperature as the accepted value for the speed of sound, what is the percent error of the values you obtained for the speed of sound? 2. How do you find the wavelength of a sound when the length of a closed tube reinforcing the sound is known? 3. How long should a closed resonance tube be in order to reinforce the sound of a tuning fork of 256 vps when the room temperature is 20°C? 4. What is the temperature of the air if a fork with a frequency of 128 vps can be reinforced by a closed tube 2.2 ft in length?

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please help with questions 1,2,3 and 4 together please
The speed of sound at 0°C = 1090 ft/sec and increases 2 ft for each degree
above zero.
Length of
Air Column
L + 0.55
Corrected
Length of
Column
1.38
Diameter of
Tube d
(in)
Wavelength
Speed of
Room
Temperature
T (C)
Sound v
L (in)
(1)
(f/sec)
256
11.5
12.05
1.38
4.01 ft
20°c
1,026.6 f/sec
320
9.2
9.75
1.38
3.25 ft
20°c
040
el sec
384
7.1
7.65
1.38
2.55 ft
20°C
979.2
f/sec
426.7
6.9
7.45
1.38
2.48 ft
20°C
1,058.2
f/sec
Questions: Show all work.
1. Using the speed of sound corrected for room temperature as the accepted value
for the speed of sound, what is the percent error of the values you obtained for the speed
of sound?
2. How do you find the wavelength of a sound when the length of a closed tube
reinforcing the sound is known?
3. How long should a closed resonance tube be in order to reinforce the sound of a tuning
fork of 256 vps when the room temperature is 20°C?
4. What is the temperature of the air if a fork with a frequency of 128 vps can be
reinforced by a closed tube 2.2 ft in length?
Data Table:
Frequency f
(vps)
Transcribed Image Text:The speed of sound at 0°C = 1090 ft/sec and increases 2 ft for each degree above zero. Length of Air Column L + 0.55 Corrected Length of Column 1.38 Diameter of Tube d (in) Wavelength Speed of Room Temperature T (C) Sound v L (in) (1) (f/sec) 256 11.5 12.05 1.38 4.01 ft 20°c 1,026.6 f/sec 320 9.2 9.75 1.38 3.25 ft 20°c 040 el sec 384 7.1 7.65 1.38 2.55 ft 20°C 979.2 f/sec 426.7 6.9 7.45 1.38 2.48 ft 20°C 1,058.2 f/sec Questions: Show all work. 1. Using the speed of sound corrected for room temperature as the accepted value for the speed of sound, what is the percent error of the values you obtained for the speed of sound? 2. How do you find the wavelength of a sound when the length of a closed tube reinforcing the sound is known? 3. How long should a closed resonance tube be in order to reinforce the sound of a tuning fork of 256 vps when the room temperature is 20°C? 4. What is the temperature of the air if a fork with a frequency of 128 vps can be reinforced by a closed tube 2.2 ft in length? Data Table: Frequency f (vps)
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