2. Shown below are graphical representations of two sound waves in a tube in Mars' atmosphere, where sound travels at a speed of 200 m/s. (1) Pressure fluctuation AP(t) What are the periods (in seconds) of these sounds on Mars? а. time t (ms) 3 (II) Pressure fluctuation AP(t) time t (ms) 3

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2. Shown below are graphical representations of two sound waves in a tube in Mars' atmosphere, where sound
travels at a speed of 200 m/s.
(1)
Pressure fluctuation AP(t)
What are the periods (in
seconds) of these sounds on
Mars?
а.
time t
(ms)
3
1
(II)
Pressure fluctuation AP()
time t
At
(ms)
3
1
b. What are the wavelengths (in meters) of these sounds on Mars?
c. A certain ideal sound speaker in Mars' atmosphere makes a sound of frequency, fMars, and wavelength,
AMars. If this speaker is then taken to Earth's atmosphere, which of these two quantities (fEarth or AEarth)
will increase, remain the same, or decrease compared to Mars? Explain your reasoning.
Transcribed Image Text:2. Shown below are graphical representations of two sound waves in a tube in Mars' atmosphere, where sound travels at a speed of 200 m/s. (1) Pressure fluctuation AP(t) What are the periods (in seconds) of these sounds on Mars? а. time t (ms) 3 1 (II) Pressure fluctuation AP() time t At (ms) 3 1 b. What are the wavelengths (in meters) of these sounds on Mars? c. A certain ideal sound speaker in Mars' atmosphere makes a sound of frequency, fMars, and wavelength, AMars. If this speaker is then taken to Earth's atmosphere, which of these two quantities (fEarth or AEarth) will increase, remain the same, or decrease compared to Mars? Explain your reasoning.
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