earth at a relative speed of ug = 1.30 x 106 m/s. Relative to the center, the tangential speed is vT = 0.350 x 106 m/s for locations A and B, which are equidistant from the center. When the frequencies of the light coming from regions A and B are measured on earth, they are not the same and each is different from the emitted frequency of 7.691 x 1014 Hz. Find the measured frequency for the light from (a) region A and (b) region B. (Give your answer to 4 significant digits. Use 2.998 x 10° m/s as the speed of light.) Galaxy Earth

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A distant galaxy is simultaneously rotating and receding from the earth. As the drawing shows, the galactic center is receding from the
earth at a relative speed of uc = 1.30 x 10° m/s. Relative to the center, the tangential speed is v = 0.350 x 106 m/s for locations A and
B, which are equidistant from the center. When the frequencies of the light coming from regions A and Bare measured on earth, they
are not the same and each is different from the emitted frequency of 7.691 x 1014 Hz. Find the measured frequency for the light from
(a) region A and (b) region B. (Give your answer to 4 significant digits. Use 2.998 x 10° m/s as the speed of light.)
AUT
A
B
Galaxy
Earth
Transcribed Image Text:A distant galaxy is simultaneously rotating and receding from the earth. As the drawing shows, the galactic center is receding from the earth at a relative speed of uc = 1.30 x 10° m/s. Relative to the center, the tangential speed is v = 0.350 x 106 m/s for locations A and B, which are equidistant from the center. When the frequencies of the light coming from regions A and Bare measured on earth, they are not the same and each is different from the emitted frequency of 7.691 x 1014 Hz. Find the measured frequency for the light from (a) region A and (b) region B. (Give your answer to 4 significant digits. Use 2.998 x 10° m/s as the speed of light.) AUT A B Galaxy Earth
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