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Zim Mathematics  - Recycle Bin (Trash Mathematics / Work in Progress) 

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I am almost ashamed to admit it but some of my best ideas come from the Recycle Bin or Trash Mathematics


Creation or Big Bang Theory   

A = Apple= God/Universe; t = time,  t would equal c (speed of light constant) where A is the principal system and in this case Universe system. N is a numeric variable/constant. C is a quantitative constant.


.(See also: Expression Constants  & Unsubordinate Fact.)

   1A  1A = NA = Ac = At ;

   1A = Every(A);    

  1. =  Every (AC1N + AC2N + AC3N + AC4N + ........); Results from Identity/Expression factoring (Unsubordinate Fact & Expression Constants).

  2. =  Every ( A + Not A); The Mathematical Equivalent (Constant Unit Unknown Expressions)

  3. =  Every (AC5N );  Results of above computation

  4. =  Every (At5N ); Because: Ac = At ; Principle System expressed in time can be looked at as a numeric constant. Loop back to line #1.

Interesting features/interpretations  of this expression:  

 



More from Creation and Big Bang Theory:

This could help explain Creation or Big Bang Theory.  And beginning to existence of System / God Transformation, with a Creation Time. Components of System God Transformation; Every(x), Any(x), Something(x), Non(x), can be found in this Math Expression Constant and subsequent Expressions also modeled by a Math Expression Constant.      Where Every(x)  is  NC , Any(x) is (C + C + C + C) t , Some(x) is/are  C ,C ,C , C, C,  and Non(x) is Ct .......Creation Time is the subsequent modeling of Expression(s) by the Math Expression Constant.  Also, as I stated under the Critical Information category, each expression can be modeled as a System Sub System and by using the System/God Transformation and Relational System Transformation and their components; Every(x); Any(x); Some(x); Non(x)  these Math Expression Constants can be worked with Mathematically.  And the nature of Phi Time relationships can be analyzed more readily as the System components can be interchanged within an existential system.

 

Expression Unit
Expression Constant Graphic

  Expression Constants -  "C"  

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     C = Expression Constant ; N = Numeric; T = Time

  • C1 + C2 + C3 = Cnx
    • C seen as any Quantitative and/or Qualitative expression has an unknown unit but has a Quantitative correlation in the unit.
    • C + C = CN
    • E=MC2 + E=MC2 => 2E =2MC2
    • Fruit A + Fruit B = 2 Fruit unit x
    • F=M/d2 + E=MC2 = > 2C unit x
    • C3/C2 => NC1
  • C1 + C2 = NC where N= 2; a Non Transformation?
    •  or C1 + C2 = NC ; where N < 2 or N >2.
    • Biological implications and/or Physical Implications?
     
  • C1 + C2 + C3 = C4 + C5 + CN
    • Different Quantitative and/or Qualitative expressions have common Quantitative components
  • C * Nx = CT1CX
    • Expression Constant * Some Quantitative component implies basic Time unit component to the expression with unknown Qualitative Constant unit.
  • C*C */ C* C = C1
    •  An expression of expressions is an expression
  • C* C * C * CN  = C1NC
    • An expression of expressions and a Quantitative component can give an expression to the power of some Quantitative Expression
  • A/A*/A/A = A    where A = Apple,
    • Gives some Apple expression
  • A/A */A/A = Fruit = C(Apple)x   where A = Fruit
    • This same expression can be seen as an Apple expression with unknown quantitative and/or qualitative unit
  • (c)/(c) */ (c)/(c) = C(Energy/MassApple)x  where c= speed of light.
    • Where even  expression(s) of the speed of light give an expression constant of unknown Quantitative and/or Qualitative unit but with Quantitative correlation.
  • cFruit = C(Energy/MassApple+Pear+Orange+NXunit Fruit )x  ;
    •  As the qualitative denominator(s) are increased and are numerically factored for any expression, useful mathematical results can be found for any such expression. Implying an Expression Unit Constant.
        C = f(Common Informational Property(s))
    • See Constant Unit Unknown expressions & methods for solving them
    • Look at mc2 =  E with   Any(B)  Every(A)  => Every(B) ; Any(B) = mass , Every(A) = C2 ,  Every(B) = Energy  and A & B are systems.  A is the principal system and B is a Sub System.

This shows the Algebraic Constant, with Numeric and Temporal context, of a given expression

Author/Owner - Zim Olson     Top of Page

 

Author/Owner - Zim Olson     Top of Page