To be or not to be of cold fusion is the question of high energy phonons as quanta of sound waves.
Time independence: [∂E(g)]²=[∂F(a)×∂r(a)]·[∂F(b)×∂r(b)] and Mass independence: ¶a(t)·¶r(t)=c²
Actually tornadoes can be classified as forms of quantized or organized sound waves. So are earthquakes, shockwaves, and sonic booms.
Time independence: [∂E(g)]²=[∂F(a)×∂r(a)]·[∂F(b)×∂r(b)] and Mass independence: ¶a(t)·¶r(t)=c²
Sound waves are really matter waves. They exist if and only if matter exist. That is why no one can hear anything in outer space. But I think we can hear sound even in outer space if the quantized ultra ultra ultra sound waves are simply quanta of the space-time continuum. The odd and even groupings of these quantized sound waves produce the quanta of matter and energy.
Time independence: [∂E(g)]²=[∂F(a)×∂r(a)]·[∂F(b)×∂r(b)] and Mass independence: ¶a(t)·¶r(t)=c²
What kind of sound waves would negative pressure produce? Implosion in contrast to explosion.
Time independence: [∂E(g)]²=[∂F(a)×∂r(a)]·[∂F(b)×∂r(b)] and Mass independence: ¶a(t)·¶r(t)=c²
mkirkpatrick (08-04-2011)
Doppler Effect? http://www.youtube.com/watch?v=5QaVzv5aR6U
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