Article 10.a145 of Book 4 defines perfection based on the « machine-combination »—that is, from the perspective of the machine-combination itself.
The present article should be viewed as an appendix to Article L4-10.a145.
Here is the definition of perfection based on the « Natural System »—that is, from the perspective of the Natural System.
The Natural System views its constructions solely in terms of « achieving its objective. »
This logic can be summarized as follows:
« The objective is the successful fusion of entity E¹ with entity E², facilitated by the Natural System. »
Its constructions therefore strictly adhere to this logic:
To this end, it equips its machine-combinations with a level of power—termed « yield »—that enables them to achieve the objective.
For the Natural System, such constructions are deemed « sufficient. »
In the context of the Natural System, the pleasing concept of perfection is defined by the terms « sufficient » and « expected yield. »
Perfection is thus the optimization of the machine-combination for achieving the objective.
Perfection therefore differs from the machine-combination’s theoretical maximum power (which is always higher). When the Natural System designs and constructs its combination-machines, it introduces them into the host system as combination-machines deemed « perfect. »
The Natural Principle is stated as follows:
All combination-machines constructed by the Natural System are considered perfect by the Natural System upon their introduction into the Host System, even though their construction is not yet complete.
This construction is completed during the first part of the combination-machine’s Journey (AB).
Alien disturbances—to which the Natural System is foreign and powerless—constantly disrupt the combination-machines, causing their performance to fluctuate and rendering them incapable of achieving the objective.
For these major reasons regarding the Natural System, its definition of « perfection » is always lower than the combination-machine’s theoretical maximum performance.
Consequently, for the combination-machine, the difference between its level of perfection and its theoretical maximum power constitutes a power reserve (or resource) that enables it to carry out its own corrections and adjustments.
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