Friday, August 28, 2009

Answers to Test #1 of GUFT

1.) The strong force is the gluonic force that binds quarks and leptons together.

2.) The electromotive force is the force of electricity, light, and other electromagnetic energy.

3.) The gravitational force is the force of gravitons and gravitinos upon supterstrings via Ricci- Scalar eiegnstates that act through norms Ward conditions.

4.) The weak force is the force of spontaneous radioactive decay.

5.) Conformal invariance is when superstrings of an orbifold eigenset are kinematically differentiating although the orbifold eigenset is in a steady state.

6.) Superconformal invariance is when superstrings of an orbifold are kinematically differentiating although the orbifold is in a steady state.

7.) A superconformal ghost anomaly is a physical memory of a superstringular phenomenon that bears non-physical states that differentiate kinematically with a minimal covariance within a tightly bound region.

8.) A graviton is a discrete transversal unit of gravitational force, while a graviton is a discrete spin-orbital unit of gravitational force.

9.) A magnetic field is the Majorana-Weyl delineation of the spin-orbital differentiation of subatomic particles. (From an electron or a proton down to a superstring.)

10.) Gravity acts thru Ricci-Scalar eigenstates to distribute a push and pull upon superestringular phenomena, while magnetism, as the result of spin-orbital delineation, bears a supplementally norm, relative to the gravitational force, push and pull upon substringular phenomena.

11.) Reverse gravity is the reversal of the directoralization of gravitons and gravitinos in terms of the trajectory of these particles to form a reversal in the directoralization of the gravitational force.

12.) Antigravity is the reversal of the harmonics of the directoralization of Ricci-Scalar eigenstates.

13.) Gluons, before Instanton-Quaternions-Field-Impulse, go into an Anti-De-Sitter mode that attaches quarks and/or leptons, while then "gluing" these together via a De-Sitter mode.

14.) A De-Sitter mode is a harmonic Ricci-Scalar eigenstate.

15.) An Anti-De-Sitter mode is an anharmonic Ricci-Scalar eigenstate.

16.) This Wilson-Gordoan transposition is the "energy" condition that happens to gluons right before Instanton-Quaternionic-Field-Impulse-Mode during the associated Anti-De-Sitter mode.

17.) De-Sitter gravity has 19 extra physical conditions, per eigenstate.

18.) A De-Sitter mode has six Njenhuis conditions, per eigenstate.

19.) Gluons, in Anti-De-Sitter mode, have an anharmonic gravity that interconnects the respective quarks and leptons via a magnetism that corresponds to this reversal of gravity right before successive instantons. Once the quarks and leptons begin to attach, the De-Sitter mode during each succeeding BRST condition holds these "glued" in parts together.

20.) The De-Sitter mode makes a gluon's light-cone-gauge-eigenstates harmonic.

21.) The Anti-De-Sitter mode makes a gluon's light-cone-gauge-eigenstate anharmonic.

22.) The Anti-De-Sitter mode and the De-Sitter mode comingle when gluons are non-entropic.

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