Message-ID: <034359Z14071995@anon.penet.fi>
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From: an306358@anon.penet.fi
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Date: Fri, 14 Jul 1995 03:41:30 UTC
Subject: Overview of Cog Physics p4:10
Lines: 45

Re: Overview of Cognitive Physics (part 4 of 10)
(5000 word introduction copyright 1995) by D. Albert Harrell
   DAHarrell@aol.com

III. DEFAULT METHOD OF SIMILE SELECTION AND REACTIONARY ORDER RESECTION.  
  
Parallel Continuity Postulate:   
"Multiple value-polarized cycle event records that have some degree of atomic
structural congruency and/or specific cell content equality (when comparing
the particle clusters of their respective fluxes, SSC INPUT), have a greater
(in proportion to said congruency) than random possibility of
particle/structure congruency among the respective opposite 
polarity definition clusters (representing the reactionary orders, SSC
OUTPUT) of the cycle events."  
 
Restating the above, a value polarized (see II. B.) record of an SSC cycle
event contains two definition clusters comprised of cognitive particles
(mostly i/o quarks) within specific and  
unique atomic formats, these clusters represent the flux (mostly sensor
particles) and the reaction (mostly shaping particles) that occurred during a
given cycle event.  Any other (latter) cycle event record, including a given
flux cluster currently being processed, which has a flux that is similar, to
any degree to the former flux cluster, has a better than random chance of
having particle cluster similarity with the former's respective opposite
polarity cluster, or in this case the "effective" reactionary order of this
historical definition artifact.  
 
An environment with IEO will reflect this ORDER as parallel pattern
continuity THROUGHOUT THE ENTIRE MECHANISM of the cognitive task network.
 This is what makes it possible to respond to a unique (unknown) perhaps
current fluctuation with some degree of effective reactionary order.
Commonly, one can extrapolate a fairly useful response sequence to an unknown
flux, by simply using the effective historical response of a former similar
flux.  This postulate is true even if the entity doesn't make any changes in
this former responses to this former flux (which is similar to said unknown
probably "current" flux).  However, even a primitive one-celled unit of cog
force, a single unexploded, unimploded, uncloned SSC will make changes in
this reaction sequence in accordance to default resection methods.  
(cont. in part 5)

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