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Doppler effect
(redirected from The Doppler effect)

   Also found in: Medical, Encyclopedia, Wikipedia 0.01 sec.
Doppler effect
n.
A change in the observed frequency of a wave, as of sound or light, occurring when the source and observer are in motion relative to each other, with the frequency increasing when the source and observer approach each other and decreasing when they move apart. The motion of the source causes a real shift in frequency of the wave, while the motion of the observer produces only an apparent shift in frequency. Also called Doppler shift.

[After Christian Johann Doppler.]

Doppler effect [ˈdɒplə]
n
(Physics / General Physics) a phenomenon, observed for sound waves and electromagnetic radiation, characterized by a change in the apparent frequency of a wave as a result of relative motion between the observer and the source Also called Doppler shift
[named after C. J. Doppler (1803-53), Austrian physicist]

Doppler effect
The difference between the frequency of a wave (as of sound or light) as measured at its source and as measured by an observer in relative motion. The Doppler effect can be used to determine the relative speed of an object by bouncing a wave (usually a radar wave) off the object and measuring the shift in the frequency of the wave. This technique is the basis of Doppler radar, as used in traffic control and navigation systems. The Doppler effect is also known as the Doppler shift. If the source and the observer are getting farther apart, the observed frequency is lower than the source frequency. In the case of light waves, the phenomenon is known as red shift. The amount of red shift in the spectra of stars is used in astronomy to determine how quickly the Earth and those stars are moving apart. If the source and the observer are getting closer together, the observed frequency is higher than the source frequency. In the case of light waves, the phenomenon is known as blue shift.
A Closer Look The whistle of an approaching train has a higher pitch as the train approaches than when it recedes, even though that same whistle, heard by a passenger on the train, maintains a constant pitch. This is an example of the Doppler effect, common to all wave phenomena (in this case, a sound wave). Motion toward the source of a wave (or, equivalently, motion of the source toward the observer) entails that the peaks and troughs of the wave are encountered more quickly than if there were no motion, so the frequency of the wave is higher for the moving observer (hence the higher whistle pitch). Similarly, motion away from the source entails following the wave's motion, so the peaks and troughs are encountered less often, and the frequency is lower for the moving observer (hence the lower whistle pitch). The Doppler effect on light waves has enabled scientists to determine that the universe is expanding. The frequencies of light given off by various substances (such as the burning of hydrogen in the fusion reactions of most stars) has been found to be lower in distant galaxies and other celestial objects, a phenomenon called red shift, since the visible light is shifted toward the red, low-frequency end of the spectrum. Astronomer Edwin Hubble reasoned that the red shift was due to the Doppler effect. As galaxies speed away from us, the frequency of the light emitted appears lower. Doppler radar and sonar use the Doppler effect on reflected radio and sound waves to distinguish between stationary and moving objects and to determine the velocity of moving ones; the echolocation of bats and some whales also exploits the Doppler effect on reflected sound waves for navigating and catching prey.
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Doppler effect
As a motorcycle speeds forward, the frequency (and pitch) of the sound waves in front of the motorcycle become higher, and the frequency (and pitch) of the sound waves behind it become lower.

The phenomenon evidenced by the change in the observed frequency of a sound or radio wave caused by a time rate of change in the effective length of the path of travel between the source and the point of observation.
ThesaurusLegend:  Synonyms Related Words Antonyms
Noun1.Doppler effect - change in the apparent frequency of a wave as observer and source move toward or away from each other
propagation - the movement of a wave through a medium
Translations
Doppler effect [ˈdɒplərɪˌfekt] N (Astron) → efecto m Doppler
Doppler effect
Doppler effect [ˈdɒplərɪˌfɛkt] n (Phys) → effetto Doppler


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As the movement of the atoms leads to very large frequency shifts through the Doppler effect, in the best of these clocks, the atoms are slowed down to a hundredth of the speed of a pedestrian in a first preparation step with the aid of laser cooling.
Developed by Omani-based creative agency, Reality CG, the brand mark is an interpretation of the Doppler Effect, a physical phenomenon that illustrates Aaesound in motionAAE.
The Doppler effect is commonly used to measure the speed of moving objects, such as cars.
 
 
 
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