Stability Constant of Ternary Complexes Formula

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Stability Constant for Ternary Complex is a type of equilibrium constant used for the formation of metal complexes in the solution. Check FAQs
KMAB=MABMAL
KMAB - Stability Constant for Ternary Complex?MAB - Concentration of Ternary Complex?MA - Concentration of Binary Ion?L - Ligand Concentration of the Complex?

Stability Constant of Ternary Complexes Example

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With units
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Here is how the Stability Constant of Ternary Complexes equation looks like with Values.

Here is how the Stability Constant of Ternary Complexes equation looks like with Units.

Here is how the Stability Constant of Ternary Complexes equation looks like.

0.0182Edit=0.006Edit0.6Edit0.55Edit
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Stability Constant of Ternary Complexes Solution

Follow our step by step solution on how to calculate Stability Constant of Ternary Complexes?

FIRST Step Consider the formula
KMAB=MABMAL
Next Step Substitute values of Variables
KMAB=0.006mol/L0.6mol/L0.55
Next Step Convert Units
KMAB=6mol/m³600mol/m³0.55
Next Step Prepare to Evaluate
KMAB=66000.55
Next Step Evaluate
KMAB=0.0181818181818182
LAST Step Rounding Answer
KMAB=0.0182

Stability Constant of Ternary Complexes Formula Elements

Variables
Stability Constant for Ternary Complex
Stability Constant for Ternary Complex is a type of equilibrium constant used for the formation of metal complexes in the solution.
Symbol: KMAB
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Concentration of Ternary Complex
Concentration of Ternary Complex is the concentration of molecule formed by the reaction of binary complex and ligand.
Symbol: MAB
Measurement: Molar ConcentrationUnit: mol/L
Note: Value can be positive or negative.
Concentration of Binary Ion
Concentration of Binary Ion is the concentration of the molecule formed by a metal and a ligand.
Symbol: MA
Measurement: Molar ConcentrationUnit: mol/L
Note: Value can be positive or negative.
Ligand Concentration of the Complex
Ligand Concentration of the Complex is the concentration of the ligand that combines with binary complex to form ternary complex.
Symbol: L
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.

Other formulas in Complex Equilibria category

​Go Stability Constant of Binary Complexes
β2=MAMcomplexL
​Go Change in Stability Constant
km=10log10(KMAB)-(log10(kMA)+log10(kMB))
​Go Stability Constant of Complex Compound
kstab=1kdis
​Go Formation Factor
nfactor=TCL°-LcomplexTCM°

How to Evaluate Stability Constant of Ternary Complexes?

Stability Constant of Ternary Complexes evaluator uses Stability Constant for Ternary Complex = (Concentration of Ternary Complex)/(Concentration of Binary Ion*Ligand Concentration of the Complex) to evaluate the Stability Constant for Ternary Complex, Stability Constant of Ternary Complexes also stability or formation or binding constant is the type of equilibrium constant used for the formation of metal complexes in the solution. Stability Constant for Ternary Complex is denoted by KMAB symbol.

How to evaluate Stability Constant of Ternary Complexes using this online evaluator? To use this online evaluator for Stability Constant of Ternary Complexes, enter Concentration of Ternary Complex (MAB), Concentration of Binary Ion (MA) & Ligand Concentration of the Complex (L) and hit the calculate button.

FAQs on Stability Constant of Ternary Complexes

What is the formula to find Stability Constant of Ternary Complexes?
The formula of Stability Constant of Ternary Complexes is expressed as Stability Constant for Ternary Complex = (Concentration of Ternary Complex)/(Concentration of Binary Ion*Ligand Concentration of the Complex). Here is an example- 0.018182 = (6)/(600*0.55).
How to calculate Stability Constant of Ternary Complexes?
With Concentration of Ternary Complex (MAB), Concentration of Binary Ion (MA) & Ligand Concentration of the Complex (L) we can find Stability Constant of Ternary Complexes using the formula - Stability Constant for Ternary Complex = (Concentration of Ternary Complex)/(Concentration of Binary Ion*Ligand Concentration of the Complex).
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