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Expressions of ...
as a function of operations modeled as complete systems

 
System, Sub System Mathematics

  • C(X)  = + - /  *  ;  Constant functionality for any X; or Cx, or C unit x

    • Where X is some object(s) constructs. ie: X, X1, Xy, (A,B,C), (A,B,C,...Z), 1, 0 , (1,0), (1+0).

    • C here is some complete object System:
       Every(C)Any(C)Some(C)Non(C)

    • "X" may be considered a sub function, sub system, or partial construct.




  • $(X) = + -  / *  ;   Giving all $ functionality for any given x or construct x.

    • Where X and "$" are some object(s) constructs. ie: X, X1, Xy, (A,B,C), (A,B,C,...Z), 1, 0 , (1,0), (1+0).

  • E(X) = + - / * ;  E is Energy, or MC2

    • Where X and "E" are some constructs. ie: X, X1, Xy, (A,B,C), (A,B,C,...Z), 1, 0 , (1,0), (1+0).

  • G(X) = +  -  /  * ;  G is a force or expression constant derived of object(s) expression, as a function of operations modeled as complete systems.

    • Where X and "G" are some constructs. ie: X, X1, Xy, (A,B,C), (A,B,C,...Z), 1, 0 , (1,0), (1+0).

    • Fruit, Mass/Matter, Object(s) Generalizations,

"A", "$", "G", "E" as commonly utilized,  are products of a partial operational system constructs.  For example: "A" would be some partial expression of:
Every(A)Any(A)Some(A)Non(A) = + - / * ; such as Any + "A", or Every + Any + "A"

So    Any + "A", Any + "$", Any + "G", Any + "E" ; from the above expressions, as a function of  the set of basic operation modeled as complete systems.   Would give a Constant "Object(s)" and Finite Functionality

1, 0 , (1,0), (1+0) as complete object systems;  give full system functionality.


Conclusion/Summary of above Expressions: 

Existential Behavior of Common expressions listed/Not Listed Above, "A", "$", "G", "E"; as partial system constructs and expressed as a function of basic operations as  complete systems, is constrained by the selection / omission of available system behavioral components Every(x), Any(x), Some(x), Non(x).  The derivations of these constructs,  "A", "$", "G", "E", etc, is further complicated by available system components and operations, & derived operations  and their system components.

Utilization of all behavioral components in existential expressions (as with "C") as a function of basic operations modeled as complete systems would give a Constant functionality for any X, or X construct. X  constructs could consist of any existential statement or functional statement(s).

 


Author/Owner - Zim Olson     Top of Page