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Given the formula
(frequency) = (speed of light)/(wavelength), Einstein's 1905 axiom "The speed of light is invariable" implies that any frequency shift entails a wavelength shift. The implication is obviously false, which means that Einstein's 1905 axiom is false as well: "Thus, the moving observer sees a wave possessing the same wavelength [...] but a different frequency [...] to that seen by the stationary observer." http://farside.ph.utexas.edu/teachin...ml/node41.html "By observing the two indicator lights, you can see for yourself that, once more, there is a blue-shift - the pulse frequency measured at the receiver is somewhat higher than the frequency with which the pulses are sent out. This time, the distances between subsequent pulses are not affected, but still there is a frequency shift." http://www.einstein-online.info/spotlights/doppler.html "Let's say you, the observer, now move toward the source with velocity Vo. You encounter more waves per unit time than you did before. Relative to you, the waves travel at a higher speed: V' = V+Vo. The frequency of the waves you detect is higher, and is given by: f' = V'/λ = (V+Vo)/λ." http://physics.bu.edu/~redner/211-sp...9_doppler.html "Vo is the velocity of an observer moving towards the source. This velocity is independent of the motion of the source. Hence, the velocity of waves relative to the observer is c + Vo. [...] The motion of an observer does not alter the wavelength. The increase in frequency is a result of the observer encountering more wavelengths in a given time." http://a-levelphysicstutor.com/wav-doppler.php The fundamental axiom of today's physics "The speed of light is invariable" is false, even nonsensical. In future physics, it will be replaced with the correct axiom "The wavelength of light is invariable". See more he https://twitter.com/pentcho_valev Pentcho Valev |
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Thread | Thread Starter | Forum | Replies | Last Post |
Future Physics: Variable Speed of Light, Invariable Wavelength | Pentcho Valev | Astronomy Misc | 2 | April 11th 19 08:14 AM |
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