A Question as a System and/or Sub System:

Every(A)(+,-,/,×)Any(A)(+,-,/,×) Some(A)(+,-,/,×) Non(A)(+,-,/,×) 
Every(?)(+,-,/,×)Any(?)(+,-,/,×) Some(?)(+,-,/,×) Non(?)(+,-,/,×) 

A is a Principal System. Basic Operations are modeled as Systems also. All the Operations are used for complete functionality of this expression.  Partial behavioral component expressions can be used for analysis.

Z / (X/A + Y / A) = ;        (X/A + Y / A) / Z = ? ;     Polar dynamic

(A + A + A) / X1 = ? xn

(X + Y + Z ) / A =  ?   ?     ?

A / ( X + Y + Z ) =  3?

?  = Xn / Yn    Yn / Xn

? - t  = X 0

? c = ?1

1 / ? = x / 1n

X / N = ?/?n

N / X =

? + ? + ? = ? unit ?3






Reason A / Yes + Reason B / No = Reason C / X


1. (Reason A / Yes) + (Reason B / No) = X
2.( (NO Reason A) /  Yes) + Reason  B = NO X
3. ((NO Reason A) / (X Yes)) + (Reason B / X )  = NO

X = Unknown ; ( ) - Rationale Sequence. and where X can = Reason C / X. As in expression above.

What is a "problems". Are there always limitations to solutions to problems. What is the nature of these solutions and their limitations. Parametized problems. Variable problems. Solution at a point? Complete Solution. Open problem. Solving an open problem? Solving an unknown problem. Making a problem and then solving it. Defining a problem then solving it? Open definition. Solving for X. Solving for 1. Solve Everything. Solve eternity. Solve for Zero. Solve for Zero unit x.

Author/Owner - Zim Olson     Top of Page