|
Part 0103 - Energy | ARGUMENT 0103-06PRECEDENTS
- 0103-03: That the effects of gravity are apparent in gravitonpairs but not in isolated gravitons.
- 0103-04: That every gravitonpair has energy which is the movement of its gravitons due to their mutual gravitypull.
- 0103-05: That the energy of a gravitonpair is as kineticenergy or potentialenergy or as a mix of both.
PARAMETERS
- Consider that energy is a property of the gravitonpair.
- Consider that the energy of a gravitonpair is as potentialenergy or kineticenergy of as a mix of both.
- Consider an isolated gravitonpair.
- Consider that the gravitons are alternately convenging and diverging.
- Consider that when the gravitons are converging, the gravitonpair's potentialenergy is decreasing.
- Consider that when the gravitons are converging, the gravitonpair's kineticenergy is increasing.
- Consider that when the gravitons are diverging, the gravitonpair's potentialenergy is increasing.
- Consider that when the gravitons are diverging, the gravitonpair's kineticenergy is decreasing.
- Consider that the gravitons are alternately colliding and reaching their apogee.
- Consider that at the moment of collision, the gravitonpair's energy is all kineticenergy.
- Consider
that at the moment of apogee, the gravitonpair's energy is all potentialenergy.
REASONING
- Because the gravitonpair is isolated, the measures of kineticenergy and
potentialenergy may vary but the energy always remains the same.
- Thus the energy of the isolated gravitonpair is conserved.
- Thus energy is a conserved property.
CONCLUSION
- That energy is a conserved property.
| COMMENTARY
While
the energy of an isolated gravitonpair is always conserved, in real
life no gravitonpair is isolated. The Universe consists of vast numbers
of gravitonpairs which are constantly on the move and constantly
colliding. Nevertheless, the principle holds. Every graviton is part of
a gravitonpair with every other graviton in the Universe. Individual
gravitonpairs
can have wildly different energy measures. Collisions involving a high
energy gravitonpair and a low energy gravitonpair will result in an
exchange of
energy but the sum of the energy involved will not change. Thus, if the
Universe is itself isolated, its energy measure (the sum of the energy
measures of its gravitonpairs) is conserved and will never change.
Of
course, if the Universe is not isolated .....
|
|
|