Monday, February 7, 2011

The Solutions to the Last Test of Course Six

1)  The collective consciousness, which effects and is effected by the multiplicit activities of Ying and Yang associated Chi throughout the duration known as time, is the thought force that pulls soul energy out of physical stratum after the death of a life-form.  When the multidirectoralized angular momentum indices of the described Ying and Yang that is associated with a life-form is aimed primarily in the direction toward the norm-to-holomorphic-spin direction that is relative to the forward moving time associated pull of space-time topological-substance of physical phenomena, then this condition sets the operation of soul energy to enter a region of less intrinsic Yang -- once the mentioned body of a given life-form dies.
               
2)  Superstrings are detected as tori because of the Gliossi associated fields that are acting upon these mentioned superstrings.

3)  Detectable superstrings are the illuminated ones because these bear ground-states that tend to be recycled indistinguishably, since, here, generally the exterialized field of such mentioned ground-states is what noticeably alters after a succession of relatively few instantons.

4)  Different superstrings often encode as the same phenomena due to the condition of indistinguishable change that transpires over the course of the recycling of ground-states.

5)  Substringular sequences are the patterns of Laplacian differential geometric substringular associations, while substringular series iterations are the patterns of Fourier differential geometric substringular associations.

6)  If there were no substringular sequence and substringular series iteration patterns, superstrings would then not be able to associate, and thus, these would not be able to exist.

7)  The condition of a subconscious or of a cognitive awareness of differential patterns produces an ability, to some extent, to overcome surrounding entropy.  This here indicates life.

8)  Two-Dimensional superstrings are detectable as "doughnut"-shaped toroidal-like phenomena, while one-dimensional superstrings are detectable as toroidal "figure-eights"-like phenomena -- the latter of which is detectable over a relatively brief Fourier Transformation.  This is do to the fields that surround these superstrings.  Two-D superstringular fields bear one annulus because two-dimensional superstrings, under a non-Njenhuis Laplacian condition, are short of a conformal dimension of three by only one spacial dimension, while one-dimensional superstringular fields bear two annuli because one-dimensional superstrings, under
 non-Njenhuis Laplacian conditons are short of a conformal dimension of three by two spacial dimensions.  Likewise, 2-d superstrings bear two and three-dimensional-associated partitions, while one-dimensional superstrings bear only flat-based (2-d-based) partitions.  This combined effect causes the fields of superstrings to bend via a torsion that is related partially due to the lack of triune Laplacian dimensionality, (under non-Njenhuis-based Gliossi conditions), in such a manner so as to have one annulus associated with the one dimension that is added to a Laplacian based 2-d string to make its field 3-dimensional or the two dimesions that are added to a one-d string that produces the conditions of a two-dimenional field moving through a relatively small Lagrangian so as to form what appears to be the conditon of the three-d field that transpires when one extrapolates such superstrings over the course of a very brief Fourier Transformation.  (This is since the conformal dimension of a Real Reimmanian-based one-d superstring's field is two dimensions under Laplacian conditions, and the kinematic operation of a briefly applied Fourier Transformation produces the detection of third dimension to such a mobile field.) Hope you did well!  Sam.                                        

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