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The Mean Activity Coefficient is the measure of ion-ion interaction in the solution containing both cation and anion. Check FAQs
γ±=A±(2714)m
γ± - Mean Activity Coefficient?A± - Mean Ionic Activity?m - Molality?

Mean Activity Coefficient for Uni-Trivalent Electrolyte Example

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Here is how the Mean Activity Coefficient for Uni-Trivalent Electrolyte equation looks like with Values.

Here is how the Mean Activity Coefficient for Uni-Trivalent Electrolyte equation looks like with Units.

Here is how the Mean Activity Coefficient for Uni-Trivalent Electrolyte equation looks like.

0.5264Edit=0.06Edit(2714)0.05Edit
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Mean Activity Coefficient for Uni-Trivalent Electrolyte Solution

Follow our step by step solution on how to calculate Mean Activity Coefficient for Uni-Trivalent Electrolyte?

FIRST Step Consider the formula
γ±=A±(2714)m
Next Step Substitute values of Variables
γ±=0.06mol/kg(2714)0.05mol/kg
Next Step Prepare to Evaluate
γ±=0.06(2714)0.05
Next Step Evaluate
γ±=0.526429605180997
LAST Step Rounding Answer
γ±=0.5264

Mean Activity Coefficient for Uni-Trivalent Electrolyte Formula Elements

Variables
Mean Activity Coefficient
The Mean Activity Coefficient is the measure of ion-ion interaction in the solution containing both cation and anion.
Symbol: γ±
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Mean Ionic Activity
The Mean Ionic Activity is the measure of the effective concentration of cation and anion in the solution.
Symbol: A±
Measurement: MolalityUnit: mol/kg
Note: Value can be positive or negative.
Molality
Molality is defined as the total number of moles of solute per kilograms of solvent present in the solution.
Symbol: m
Measurement: MolalityUnit: mol/kg
Note: Value can be positive or negative.

Other Formulas to find Mean Activity Coefficient

​Go Mean Activity Coefficient for Uni-Bivalent Electrolyte
γ±=A±(413)m
​Go Mean Activity Coefficient for Uni-Univalent Electrolyte
γ±=A±m
​Go Mean Activity Coefficient using Debey-Huckel Limiting Law
γ±=exp(-A(Zi2)(I))

Other formulas in Mean Activity Coefficient category

​Go Ionic Strength for Bi-Bivalent Electrolyte
I=(12)(m+((Z+)2)+m-((Z-)2))
​Go Ionic Strength for Uni-Univalent Electrolyte
I=(12)(m+((Z+)2)+m-((Z-)2))
​Go Ionic Strength of Bi-Trivalent Electrolyte
I=(12)(2m+((Z+)2)+3m-((Z-)2))
​Go Ionic Strength of Uni-Bivalent Electrolyte
I=(12)(m+((Z+)2)+(2m-((Z-)2)))

How to Evaluate Mean Activity Coefficient for Uni-Trivalent Electrolyte?

Mean Activity Coefficient for Uni-Trivalent Electrolyte evaluator uses Mean Activity Coefficient = Mean Ionic Activity/((27^(1/4))*Molality) to evaluate the Mean Activity Coefficient, The Mean activity coefficient for Uni-trivalent electrolyte formula is defined as the ratio of the mean ionic activity to the fourth root of 27 and molality of the electrolytic solution. Mean Activity Coefficient is denoted by γ± symbol.

How to evaluate Mean Activity Coefficient for Uni-Trivalent Electrolyte using this online evaluator? To use this online evaluator for Mean Activity Coefficient for Uni-Trivalent Electrolyte, enter Mean Ionic Activity (A±) & Molality (m) and hit the calculate button.

FAQs on Mean Activity Coefficient for Uni-Trivalent Electrolyte

What is the formula to find Mean Activity Coefficient for Uni-Trivalent Electrolyte?
The formula of Mean Activity Coefficient for Uni-Trivalent Electrolyte is expressed as Mean Activity Coefficient = Mean Ionic Activity/((27^(1/4))*Molality). Here is an example- 0.774161 = 0.06/((27^(1/4))*0.05).
How to calculate Mean Activity Coefficient for Uni-Trivalent Electrolyte?
With Mean Ionic Activity (A±) & Molality (m) we can find Mean Activity Coefficient for Uni-Trivalent Electrolyte using the formula - Mean Activity Coefficient = Mean Ionic Activity/((27^(1/4))*Molality).
What are the other ways to Calculate Mean Activity Coefficient?
Here are the different ways to Calculate Mean Activity Coefficient-
  • Mean Activity Coefficient=Mean Ionic Activity/((4^(1/3))*Molality)OpenImg
  • Mean Activity Coefficient=Mean Ionic Activity/MolalityOpenImg
  • Mean Activity Coefficient=exp(-Debye Huckel limiting Law Constant*(Charge Number of Ion Species^2)*(sqrt(Ionic Strength)))OpenImg
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