Showing posts with label tree amplitude. Show all posts
Showing posts with label tree amplitude. Show all posts

Wednesday, November 9, 2011

Course 9, First Course of Fock Space and the Light-Cone-Gauge, Session 12

How do Planck Phenomena propagate?:   Strings are in iteration in the following arbitrary case scenario.  Imaginary exchange as described by an odd function happens as real residue is given off here and received.  This means that the relative bottoms of the here mentioned superstrings are exchanged with the corresponding relative tops of the respective substringular counterparts.  (The superstrings & their counterparts are now decompactified by a factor of one to 3*10^8.)  This prior activity rasises the stringualr counterparts and moves these "down" closer to the prior mentioned superstrings.  The slack here causes the discussed bottom of the substringular counterparts to exchange with the said tops of the corresponding superstrings (reciprocal imaginary exchange).  The prior activity lifts the superstrings (not to be confused with their counterparts) and moves these down closer to their corresponding Planck Phenomena.  The Planck Phenomena stays relatively stationary in the meanwhile -- when not including the wobble of the said Planck Phenomena.  This motion that I have just described contracts the light-cone-gauge like a spring, causing the ensuing Ultimon Flow.  This springing flaps the angular momentum of indices of the said Planck Phenomena in an anharmonic/harmonic cycle that flaps just enough to allow Ultimon Flow, like a paint stirrer twitches then flapped.  The twists in the light-cone-gauge eigenstates that are related to what I just mentioned bears gauge-metrics that help determine whether or not the superstring travel at any given velocity and/or tensorically based speed or not. (The "tensorically based speed" would be a velocity that is based on the directoralization of a tree amplitude.)  A full twist in the fabric of the light-cone-gauge allows for a relatively "infinite" speed, such as the amplitude of phenomena displacement that happens during Ultimon Fllow,  while any twist quotient in-between allows for any speed of the superstrings in-between, since tachyonic motion may redistribute phenomena to basically any other location in just one sequential series of instantons.  Such a displacement that is derived in-between the Real Reimmanian duration that exists from one instanton to the next one may redistribute phenomena as such on account that Ultimon Flow is the Imaginary based flow that cycles the Ultimon in-between two consecutive Real Based instantons.  These mentioned twists are never entangled when unfrayed, yet, the twists are in the individual fabric of the five-quantum-based and ten-quantum-based first-ordered light-cone-gauge eigenstates that are associated with one-dimensional and two-dimensional superstrings respectively.  Two-Dimensional superstrings may influence one-dimensional strings to have their light-cone-gauge first-order-based quanta to twist to an arbitrary proscribed extent and vice                                                        versa.                                                                                                                                                      
I will continue with the suspence later.  Expect a lot of posts soon now that I have my time freed up and my computer is working better now!  God Bless.  Samuel David Roach.                                                                            

Monday, April 26, 2010

Course 4 on The Substringular Vs. The Globally Distinguishable, Session 4, Part 1

Plain energy is the re assortment of one-dimensional strings taken as an eigenbasis. Individual eigenstates of energy are sequences of the given individual one-dimensional strings along the ultimon that re assort after reiterations. An individual sequence of strings that define such an eigenstate, as stated before, breaks down after each iteration of these strings, circle the ultimon, and subsequently reiterate within the same relative particular neighborhood if not tachyonic. When this happens, the surroundings must change. (Their relative spacing will remain the same here -- I'll show you in words!) Remember, this is one eigenstate! It is time independent. (Although, to be measured as a specific thing, it must be detected during an increment of some elapsed metric.) So, the amplitude, direction, and placement of the given eigenstate must be constant over the "sliver" of duration that defines when that operation of motion is occurring in that sequence (relative). The surroundings would change because everything constantly changes. Surrounding change is not all uniform during the sliver of time of a particular metric. Unassociated phenomena relative to the changes given must be according to what this is functioning with. What something associates with is what something functions with. So, the whole break down is stuff circling around the ultimon, andthe re association of strings is based on an association that is common to all of those strings that are used to form a sequence that defines a particular eigenstate of energy. This association could not be interactively kinematic at every sliver of transpiring differentiation. That would be an unorganized fiasco. (Although all points communicate at least one piece of information to all other points during the transit of those points around the ultimon.) The manner in which what I just described happens will be described to you in general terms in part two of this session. I hope that people are reading my writings, and learning from what I am teaching them. I will conclude with the suspense later. I hope you have a great day.
Sincerely,
Samuel David Roach.