Degree of Dissociation given Ka and Molar Volume of Weak Acid Solution

STEP 0: Pre-Calculation Summary
Formula Used
Degree of Dissociation = sqrt(Dissociation Constant of Weak Acid*Molar Volume)
𝝰 = sqrt(Ka*Vm)
This formula uses 1 Functions, 3 Variables
Functions Used
sqrt - A square root function is a function that takes a non-negative number as an input and returns the square root of the given input number., sqrt(Number)
Variables Used
Degree of Dissociation - The Degree of Dissociation is the extent of generating current carrying free ions, which are dissociated from the fraction of solute at a given concentration.
Dissociation Constant of Weak Acid - The Dissociation Constant of Weak Acid is a quantitative measure of the strength of a weak acid in solution.
Molar Volume - (Measured in Cubic Meter per Mole) - Molar Volume is the volume occupied by one mole of a substance which can be a chemical element or a chemical compound at Standard Temperature and Pressure.
STEP 1: Convert Input(s) to Base Unit
Dissociation Constant of Weak Acid: 16 --> No Conversion Required
Molar Volume: 32 Cubic Meter per Mole --> 32 Cubic Meter per Mole No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
𝝰 = sqrt(Ka*Vm) --> sqrt(16*32)
Evaluating ... ...
𝝰 = 22.6274169979695
STEP 3: Convert Result to Output's Unit
22.6274169979695 --> No Conversion Required
FINAL ANSWER
22.6274169979695 22.62742 <-- Degree of Dissociation
(Calculation completed in 00.004 seconds)

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Created by Shivam Sinha
National Institute Of Technology (NIT), Surathkal
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Verified by Akshada Kulkarni
National Institute of Information Technology (NIIT), Neemrana
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Ostwald Dilution Law Calculators

Dissociation constant of Weak Acid Ka given Concentration of Weak Acid and its Ions
​ LaTeX ​ Go Dissociation Constant of Weak Acid = (Concentration of Hydrogen Ion*Concentration of Anion in Weak Acid)/Concentration of Weak Acid
Concentration of Weak Acid given Dissociation Constant and Concentration of Ions
​ LaTeX ​ Go Concentration of Weak Acid = (Concentration of Hydrogen Ion*Concentration of Anion in Weak Acid)/Dissociation Constant of Weak Acid
Concentration of Hydrogen ion given Ka and Concentration of Weak Acid and Anion
​ LaTeX ​ Go Concentration of Hydrogen Ion = (Dissociation Constant of Weak Acid*Concentration of Weak Acid)/Concentration of Anion in Weak Acid
Concentration of Anion given Ka and Concentration of Weak Acid and Hydrogen ion
​ LaTeX ​ Go Concentration of Anion in Weak Acid = (Dissociation Constant of Weak Acid*Concentration of Weak Acid)/Concentration of Hydrogen Ion

Degree of Dissociation given Ka and Molar Volume of Weak Acid Formula

​LaTeX ​Go
Degree of Dissociation = sqrt(Dissociation Constant of Weak Acid*Molar Volume)
𝝰 = sqrt(Ka*Vm)

Explain Ostwald’s dilution law.

Ostwald’s dilution law is a relationship proposed in 1888 by Wilhelm Ostwald. Ostwald’s dilution law describes the dissociation constant of the weak electrolyte with the degree of dissociation (α) and the concentration of the weak electrolyte. Ostwald’s dilution law states that only at infinite dilution the weak electrolyte undergoes complete ionization.

How to Calculate Degree of Dissociation given Ka and Molar Volume of Weak Acid?

Degree of Dissociation given Ka and Molar Volume of Weak Acid calculator uses Degree of Dissociation = sqrt(Dissociation Constant of Weak Acid*Molar Volume) to calculate the Degree of Dissociation, The Degree of dissociation given Ka and molar volume of weak acid for condition degree of dissociation much less than 1 formula is defined as the square root of the product of the dissociation constant of the weak acid (Ka) and the molar volume of weak acid. Degree of Dissociation is denoted by 𝝰 symbol.

How to calculate Degree of Dissociation given Ka and Molar Volume of Weak Acid using this online calculator? To use this online calculator for Degree of Dissociation given Ka and Molar Volume of Weak Acid, enter Dissociation Constant of Weak Acid (Ka) & Molar Volume (Vm) and hit the calculate button. Here is how the Degree of Dissociation given Ka and Molar Volume of Weak Acid calculation can be explained with given input values -> 22.62742 = sqrt(16*32).

FAQ

What is Degree of Dissociation given Ka and Molar Volume of Weak Acid?
The Degree of dissociation given Ka and molar volume of weak acid for condition degree of dissociation much less than 1 formula is defined as the square root of the product of the dissociation constant of the weak acid (Ka) and the molar volume of weak acid and is represented as 𝝰 = sqrt(Ka*Vm) or Degree of Dissociation = sqrt(Dissociation Constant of Weak Acid*Molar Volume). The Dissociation Constant of Weak Acid is a quantitative measure of the strength of a weak acid in solution & Molar Volume is the volume occupied by one mole of a substance which can be a chemical element or a chemical compound at Standard Temperature and Pressure.
How to calculate Degree of Dissociation given Ka and Molar Volume of Weak Acid?
The Degree of dissociation given Ka and molar volume of weak acid for condition degree of dissociation much less than 1 formula is defined as the square root of the product of the dissociation constant of the weak acid (Ka) and the molar volume of weak acid is calculated using Degree of Dissociation = sqrt(Dissociation Constant of Weak Acid*Molar Volume). To calculate Degree of Dissociation given Ka and Molar Volume of Weak Acid, you need Dissociation Constant of Weak Acid (Ka) & Molar Volume (Vm). With our tool, you need to enter the respective value for Dissociation Constant of Weak Acid & Molar Volume and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Degree of Dissociation?
In this formula, Degree of Dissociation uses Dissociation Constant of Weak Acid & Molar Volume. We can use 3 other way(s) to calculate the same, which is/are as follows -
  • Degree of Dissociation = sqrt(Dissociation Constant of Weak Acid/Initial Concentration)
  • Degree of Dissociation = sqrt(Dissociation Constant of Weak Base/Initial Concentration)
  • Degree of Dissociation = sqrt(Dissociation Constant of Weak Base*Molar Volume)
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