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| Tags: momentum, pilot, position, waves |
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#1
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Quantum waves give a particle continuous motion by being a pilot wave.
The particle will spend less time in a position where it has high momentum and will spend more time in a place of low momentum. The momentum high or low determines how often a certain position is found. Max Born's interpretation must be replaced. Another name for quantum waves is predictability waves. We can only know the odds. God knows the outcome. Mitch Raemsch Twice Nobel Laureate 2008 |
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#2
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On Mar 29, 1:32*pm, wrote:
Quantum waves give a particle continuous motion by being a pilot wave. The particle will spend less time in a position where it has high momentum and will spend more time in a place of low momentum. The momentum high or low determines how often a certain position is found. Max Born's interpretation must be replaced. Another name for quantum waves is predictability waves. We can only know the odds. God knows the outcome. Mitch Raemsch Twice Nobel Laureate 2008 You could put a sphere around the quantum wavelength of the particle. This you could call a quantum wavelet. Einstein did the same with light. Mitch Raemsch Twice Nobel Laureate 2008 |
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#3
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On Mar 30, 8:15*pm, wrote:
On Mar 29, 1:32*pm, wrote: Quantum waves give a particle continuous motion by being a pilot wave. The particle will spend less time in a position where it has high momentum and will spend more time in a place of low momentum. The momentum high or low determines how often a certain position is found. Max Born's interpretation must be replaced. Another name for quantum waves is predictability waves. We can only know the odds. God knows the outcome. Mitch Raemsch Twice Nobel Laureate 2008 You could put a sphere around the quantum wavelength of the particle. This you could call a quantum wavelet. Einstein did the same with light. Mitch Raemsch Twice Nobel Laureate 2008 A quantum wave is motion geometry. Mitch Raemsch Twice Nobel Laureate 2008 |
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