Mass Ratio of Solute in Extract Phase Formula

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The Mass Ratio of Solute in Extract Phase is the ratio of mass of solute in the extract phase to the mass of solvent plus carrier liquid in the extract phase. Check FAQs
Y=yCyA+yC
Y - Mass Ratio of Solute in Extract Phase?yC - Mass Fraction of Solute in the Extract?yA - Mass Fraction of Carrier Liquid in the Extract?

Mass Ratio of Solute in Extract Phase Example

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With units
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Here is how the Mass Ratio of Solute in Extract Phase equation looks like with Values.

Here is how the Mass Ratio of Solute in Extract Phase equation looks like with Units.

Here is how the Mass Ratio of Solute in Extract Phase equation looks like.

0.3603Edit=0.3797Edit0.674Edit+0.3797Edit
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Mass Ratio of Solute in Extract Phase Solution

Follow our step by step solution on how to calculate Mass Ratio of Solute in Extract Phase?

FIRST Step Consider the formula
Y=yCyA+yC
Next Step Substitute values of Variables
Y=0.37970.674+0.3797
Next Step Prepare to Evaluate
Y=0.37970.674+0.3797
Next Step Evaluate
Y=0.360349245515801
LAST Step Rounding Answer
Y=0.3603

Mass Ratio of Solute in Extract Phase Formula Elements

Variables
Mass Ratio of Solute in Extract Phase
The Mass Ratio of Solute in Extract Phase is the ratio of mass of solute in the extract phase to the mass of solvent plus carrier liquid in the extract phase.
Symbol: Y
Measurement: NAUnit: Unitless
Note: Value should be less than 1.
Mass Fraction of Solute in the Extract
The Mass Fraction of Solute in the Extract Phase is the mass fraction of the solute in the extract phase after separation of the ternary mixture.
Symbol: yC
Measurement: NAUnit: Unitless
Note: Value should be less than 1.
Mass Fraction of Carrier Liquid in the Extract
The Mass Fraction of Carrier Liquid in the Extract Phase is the mass fraction of the carrier liquid in the extract phase after separation of the ternary mixture.
Symbol: yA
Measurement: NAUnit: Unitless
Note: Value should be less than 1.

Other formulas in Distribution Coefficient, Selectivity and Mass Ratio category

​Go Distribution Coefficient of Carrier Liquid from Activity Coefficients
KCarrierLiq=ΥaRΥaE
​Go Distribution Coefficient of Carrier Liquid from Mass Fraction
KCarrierLiq=yAxA
​Go Distribution Coefficient of Solute from Activity Coefficient
KSolute=ΥcRΥcE
​Go Distribution Coefficient of Solute from Mass Fractions
KSolute=yCxC

How to Evaluate Mass Ratio of Solute in Extract Phase?

Mass Ratio of Solute in Extract Phase evaluator uses Mass Ratio of Solute in Extract Phase = Mass Fraction of Solute in the Extract/(Mass Fraction of Carrier Liquid in the Extract+Mass Fraction of Solute in the Extract) to evaluate the Mass Ratio of Solute in Extract Phase, The Mass Ratio of Solute in Extract Phase formula is defined as formula to calculate mass ratio of solute given the all the mass fractions in the extract phase. This value is used for plotting Maloney Schubert or Janecke Diagram. Mass Ratio of Solute in Extract Phase is denoted by Y symbol.

How to evaluate Mass Ratio of Solute in Extract Phase using this online evaluator? To use this online evaluator for Mass Ratio of Solute in Extract Phase, enter Mass Fraction of Solute in the Extract (yC) & Mass Fraction of Carrier Liquid in the Extract (yA) and hit the calculate button.

FAQs on Mass Ratio of Solute in Extract Phase

What is the formula to find Mass Ratio of Solute in Extract Phase?
The formula of Mass Ratio of Solute in Extract Phase is expressed as Mass Ratio of Solute in Extract Phase = Mass Fraction of Solute in the Extract/(Mass Fraction of Carrier Liquid in the Extract+Mass Fraction of Solute in the Extract). Here is an example- 0.360349 = 0.3797/(0.674+0.3797).
How to calculate Mass Ratio of Solute in Extract Phase?
With Mass Fraction of Solute in the Extract (yC) & Mass Fraction of Carrier Liquid in the Extract (yA) we can find Mass Ratio of Solute in Extract Phase using the formula - Mass Ratio of Solute in Extract Phase = Mass Fraction of Solute in the Extract/(Mass Fraction of Carrier Liquid in the Extract+Mass Fraction of Solute in the Extract).
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