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The Biosynthesis Science on which the computations are based obtains from a multidisciplinary description of the cell: prokaryrotes and eukaryotes, and archeae. Indeed, the Cell Science is an amalgam of Cell Biology, Biochemistry, Chemical Engineering, Electrical Circuitry, Chemistry, Physics, Electrochemistry, a heavy dose of Mathematics, and especially Chemical and Quantum Physics.

By construction, the common description of a cell is adopted as the base container and into this container is inserted all biologics as observed in all well-known research. With the amalgamation of the sciences the essence of the Cell Science is constructed as mechanistic, meaning every activity is ascribed to a specific biologic dynamic of either motion or messaging, or structure to the extent possible.

Further in refinement, the biologics are positioned in a set of spatially distributed locales in the cell such that optimizes the respective functionalities, Subsequently, in continual upgrade of efficiency of the biologics, the contents of the description, mechanism and kinetics of every activity is sought to be addressed deterministically to enable the construction of an applicable mathematical physics representation.

In that commitment to causality, we are guided by the core object of Internal Self-Consistency. In effect any aspect of the Cell Science must be consistent with all other aspects of the overall science. Breaks in Internal Self Consistencies are not allowed, and so a new science is not admitted into the body of the science until Internal Self Consistency is established. Of course, we can do this, because our science is proprietary and so does not have to be submitted to other guidelines but only of Internal Self-Consistency.

This quest for consistency has led us to a new characterization of Biosynthesis reactions involving only biological systems, which is admitted as bio-condensation: A class of reactions in which the molecules with energy content otherwise in liquid state "condense" to Soft-Matter state, with energy preservation.

The Biosynthesis Science is operationally integrated from four primary science research activities:
  • Biologics Functions Science
  • Global Spatial Distribution
  • Signalling and Messaging
  • Exchange and Communication

which collectively helps to address the primary characteristics of the cell

  biological reactions are not similar to chemical reactions. Biological materials being Condensed Soft-Matter form from chemical substances by a reactions mechanism we deem as bio-condensation. For purposes of the discussion of the bio-condensation reactions with an equational representation, the metabolic reaction in a substance A condenses into a substance B gets denoted as

   Eq. 1

being a combination of chemical reaction by the arrow, ->, and an actual condensing into Soft-Matter represented with the mathematical union, U. In that regard then a condensation reaction may be represented with the chemical equation: 

 Eq. 2

and represented simply as

   Eq. 3

Biosynthesis reactions are therefore identified as those points of chemical reactions denoted as U. So a peptide or an amino acid has the symbolic representation.

   Eq. 2

it follows therefore that a biologic produced from the condensation of at least two biologics can even be represented as

 Eq. 4

 


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