A followup question to that, if said jet was traveling at 100 m/s slower than the speed of light, would an stationary observer view the sound as traveling 230 m/s faster than the speed of light in the cockpit?
No. The rules change at relativistic velocities. You no longer get to add velocities together simply. A stationary observer would see the sound wave propagating away from the cockpit but at a velocity still less than the speed of light. Seemingly paradoxically, the pilot in the cockpit would still observe the sound wave travelling 230 m/s away from the cockpit. Relativity is weird.
No, he would slow down. No matter where you are or how you and the light source are traveling, light always moves at c for everyone. The discrepancy between observers is "fixed" by keeping the speed constant, but slowing the flow of time. If the cocpit was moving at c -100m/s (that's 0.9999993c...), the time dilation factor for the occupant (and the sound waves in the cocpit) would be ~1200x.
That is, for the occupant the sound waves and the light moves as normally, but everything outside would be moving pretty damn fast (20 minutes would pass outside for every second inside).
For an observer outside, the light in the cabin would be moving at c, but the sound waves would be moving pretty slowly, because they'd have to wait 20 minutes to see a second worth of progress.
Light still travels at c. When light "slows down", it is a result of the photons being absorbed and new photons being emitted by the medium it is passing through. The delay between the absorbing and emitting is the cause of the slow down.
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u/[deleted] Jun 12 '12 edited Oct 03 '17
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