This change of action would be the true spirit of thanksgiving. Celebrated this year on November 24, 2011 in the United States of America.
This change of action would be the true spirit of thanksgiving. Celebrated this year on November 24, 2011 in the United States of America.
Time independence: [∂E(g)]²=[∂F(a)×∂r(a)]·[∂F(b)×∂r(b)] and Mass independence: ¶a(t)·¶r(t)=c²
Drifter(11-23-2011)
I'm thankful for the opportunity to continue working on deuteron cold fusion. On the other hand, I'm bothered by the fact of receiving almost no scientific feedback regarding a quantum theory of the space-time continuum.
Time independence: [∂E(g)]²=[∂F(a)×∂r(a)]·[∂F(b)×∂r(b)] and Mass independence: ¶a(t)·¶r(t)=c²
I cannot be thankful for receiving no feedback on a quantum theory of the space-time continuum.
Time independence: [∂E(g)]²=[∂F(a)×∂r(a)]·[∂F(b)×∂r(b)] and Mass independence: ¶a(t)·¶r(t)=c²
Drifter(11-28-2011)
One of my consolitions is the successful implementation of deuteron cold fusion.
Time independence: [∂E(g)]²=[∂F(a)×∂r(a)]·[∂F(b)×∂r(b)] and Mass independence: ¶a(t)·¶r(t)=c²
I hope I live to see it happened.
Time independence: [∂E(g)]²=[∂F(a)×∂r(a)]·[∂F(b)×∂r(b)] and Mass independence: ¶a(t)·¶r(t)=c²
mkirkpatrick (11-30-2011)
There are currently 1 users browsing this thread. (0 members and 1 guests)