METHOD FOR THE SELECTION OF AN OPERATIVE COMPONENT FOR AMALGAMATING A MULTIPLE PHASE SYSTEM INTO A SINGLE PHASE SYSTEM, DISPERSION OR EMULSION

A material useful as an operative component to effect the combination of at least a first and a second immiscible phase into a single phase system, dispersion or emulsion is selected. The operative component is determined by the steps of: selecting a first operative component having a predetermined...

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Main Author LUSTIG STEVEN RAYMOND
Format Patent
LanguageEnglish
Published 30.04.2009
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Abstract A material useful as an operative component to effect the combination of at least a first and a second immiscible phase into a single phase system, dispersion or emulsion is selected. The operative component is determined by the steps of: selecting a first operative component having a predetermined sigma profile associated therewith; computing the value of the free energy of mixing for the operative component and the components in the first and the second immiscible phases; if the free energy of mixing as computed is greater than zero, mutating the sigma profile of the first candidate operative component to define a hypothetical sigma profile of a candidate substitute operative component; computing the value of the free energy of mixing for the candidate substitute operative component and the components in the first and a second immiscible phases; repeating steps c) and d) either for a predetermined number of repetitions or until the value of the free energy of mixing of a combination of the candidate substitute operative component and the first and a second immiscible phases is less than zero, whichever first occurs; identifying a material that exhibits a sigma profile corresponding to the mutated sigma profile of that candidate substitute operative component that produces a a free energy of salvation less than zero.
AbstractList A material useful as an operative component to effect the combination of at least a first and a second immiscible phase into a single phase system, dispersion or emulsion is selected. The operative component is determined by the steps of: selecting a first operative component having a predetermined sigma profile associated therewith; computing the value of the free energy of mixing for the operative component and the components in the first and the second immiscible phases; if the free energy of mixing as computed is greater than zero, mutating the sigma profile of the first candidate operative component to define a hypothetical sigma profile of a candidate substitute operative component; computing the value of the free energy of mixing for the candidate substitute operative component and the components in the first and a second immiscible phases; repeating steps c) and d) either for a predetermined number of repetitions or until the value of the free energy of mixing of a combination of the candidate substitute operative component and the first and a second immiscible phases is less than zero, whichever first occurs; identifying a material that exhibits a sigma profile corresponding to the mutated sigma profile of that candidate substitute operative component that produces a a free energy of salvation less than zero.
Author LUSTIG STEVEN RAYMOND
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Snippet A material useful as an operative component to effect the combination of at least a first and a second immiscible phase into a single phase system, dispersion...
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SubjectTerms ANALOGUE COMPUTERS
CALCULATING
COMPUTING
COUNTING
INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTEDFOR SPECIFIC APPLICATION FIELDS
PHYSICS
Title METHOD FOR THE SELECTION OF AN OPERATIVE COMPONENT FOR AMALGAMATING A MULTIPLE PHASE SYSTEM INTO A SINGLE PHASE SYSTEM, DISPERSION OR EMULSION
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