That definitely means that you are at a higher state of consciousness than my submental consciousness. Maybe if I study more I will reach your level of consciousness someday or never?
That definitely means that you are at a higher state of consciousness than my submental consciousness. Maybe if I study more I will reach your level of consciousness someday or never?
Time independence: [∂E(g)]²=[∂F(a)×∂r(a)]·[∂F(b)×∂r(b)] and Mass independence: ¶a(t)·¶r(t)=c²
Antonio;
I don’t believe one’s profession determines any level of consciousness superiority; if it did, yours would reign above them all (including religion). Mathematics can be like a hallucinatory drug that provides spectacular vistas but sooner or latter one must return to reality or run the risk of insanity.
On the lighter side, I’m just trying to have you get your head out of your math long enough to return to the world of physical reality to explain those vistas.![]()
David![]()
Dave,
As the great mathematician DeMoivre said the line connecting two realities passes thru the region of imaginality. Without imagination nothing exists not even the vacuum. I trying to use math to build a cold fusion reactor if it is at all possible in this universe we are living in?
Time independence: [∂E(g)]²=[∂F(a)×∂r(a)]·[∂F(b)×∂r(b)] and Mass independence: ¶a(t)·¶r(t)=c²
Cold fusion will manifest within the next 10 years,can you wait that long?
regards michael.
Humilty,coupled with boldness,surprises truth to
reveal herself?
I can wait forever if not in this universe maybe the next universe just around the corner of my eye.
Time independence: [∂E(g)]²=[∂F(a)×∂r(a)]·[∂F(b)×∂r(b)] and Mass independence: ¶a(t)·¶r(t)=c²
Then it would a party of spirits and all spirits are on the house.
Time independence: [∂E(g)]²=[∂F(a)×∂r(a)]·[∂F(b)×∂r(b)] and Mass independence: ¶a(t)·¶r(t)=c²
Since spirits can freely roam about everywhere and everywhen in space-time this can be an everlasting universal party limited only by Newton's law of universal gravitation or maybe not?
Time independence: [∂E(g)]²=[∂F(a)×∂r(a)]·[∂F(b)×∂r(b)] and Mass independence: ¶a(t)·¶r(t)=c²
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