Exemplo 17.8 de College Physics, 17.7 Ultrasound
Problema e solução em inglês, como no livro original.
Ultrasound that has a frequency of 2.50 MHz is sent toward blood in an artery that is moving toward the source at 20.0 cm/s, as illustrated in Figure 17.47. Use the speed of sound in human tissue as 1540 m/s. (Assume that the frequency of 2.50 MHz is accurate to seven significant figures.)
Resolva no papel primeiro. Depois abra a solução um passo de cada vez e pare assim que conseguir terminar sozinho.
The first two questions can be answered using and for the Doppler shift. The last question asks for beat frequency, which is the difference between the original and returning frequencies.
(1) Identify knowns:
(2) Enter the given values into the equation.
(3) Calculate to find the frequency: 2,500,325 Hz.
(1) Identify knowns:
is the frequency received by the speaker-microphone.
The minus sign is used because the motion is toward the observer.
(2) Enter the given values into the equation:
(3) Calculate to find the frequency returning to the source: 2,500,649 Hz.
(1) Identify knowns:
(2) Substitute known values:
(3) Calculate to find the beat frequency: 649 Hz.
The Doppler shifts are quite small compared with the original frequency of 2.50 MHz. It is far easier to measure the beat frequency than it is to measure the echo frequency with an accuracy great enough to see shifts of a few hundred hertz out of a couple of megahertz. Furthermore, variations in the source frequency do not greatly affect the beat frequency, because both and would increase or decrease. Those changes subtract out in
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