## Equilibrium Pressure of Gaseous Adsorbate using Freundlich Equation Solution

STEP 0: Pre-Calculation Summary
Formula Used
p = ((x/(m*k))^n)
This formula uses 5 Variables
Variables Used
Equilibrium Pressure of the Gaseous Adsorbate - Equilibrium Pressure of the Gaseous Adsorbate is the pressure at equilibrium of a adsorbate which is gaseous.
Mass of Adsorbate - (Measured in Kilogram) - Mass of Adsorbate is the amount of substance that is adsorbed.
Mass of Adsorbent - (Measured in Kilogram) - The Mass of Adsorbent is the weight of the solid material on which gas is adsorbed.
Adsorption Constant - The Adsorption Constant depends on the nature of the adsorbent and the gas at a particular temperature.
Freundlich Adsorption Constant - Freundlich Adsorption Constant depends on the nature of the adsorbent and the gas at a particular temperature.
STEP 1: Convert Input(s) to Base Unit
Mass of Adsorbate: 12 Gram --> 0.012 Kilogram (Check conversion here)
Mass of Adsorbent: 4 Gram --> 0.004 Kilogram (Check conversion here)
Adsorption Constant: 2 --> No Conversion Required
Freundlich Adsorption Constant: 3 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
p = ((x/(m*k))^n) --> ((0.012/(0.004*2))^3)
Evaluating ... ...
p = 3.375
STEP 3: Convert Result to Output's Unit
3.375 --> No Conversion Required
3.375 <-- Equilibrium Pressure of the Gaseous Adsorbate
(Calculation completed in 00.031 seconds)
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Created by Soupayan banerjee
National University of Judicial Science (NUJS), Kolkata
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## < 9 Freundlich adsorption isotherm Calculators

Equilibrium Pressure of Gaseous Adsorbate using Freundlich Equation
Equilibrium Concentration of Aqueous Adsorbate using Freundlich Equation
Adsorption constant k using Freundlich adsorption constant
Adsorption Constant = Mass of Gas Adsorbed/(Mass of Adsorbent*Pressure of Gas^(1/Freundlich Adsorption Constant)) Go
Mass of adsorbent using Freundlich adsorption isotherm
Mass of Adsorbent = Mass of Gas Adsorbed/(Adsorption Constant*Pressure of Gas^(1/Freundlich Adsorption Constant)) Go
Mass of gas adsorbed
Mass of Gas Adsorbed = Mass of Adsorbent*Adsorption Constant*Pressure of Gas^(1/Freundlich Adsorption Constant) Go
Mass of gas adsorbed if n is equal to 1
Mass of Gas Adsorbed = Mass of Adsorbent*Adsorption Constant*Pressure of Gas Go
Adsorption Constant if n is equal to 1
Adsorption Constant = Mass of Gas Adsorbed/Mass of Adsorbent*Pressure of Gas Go
Mass of adsorbent if n is equal to 1
Mass of Adsorbent = Mass of Gas Adsorbed/Adsorption Constant*Pressure of Gas Go
Pressure of gas if n is equal to 1
Pressure of Gas = Mass of Gas Adsorbed/Mass of Adsorbent*Adsorption Constant Go

## Equilibrium Pressure of Gaseous Adsorbate using Freundlich Equation Formula

p = ((x/(m*k))^n)

## What is Freundlich equation?

The relationship is also applicable for the concentration of a solute adsorbed onto the surface of a solid and the concentration of the solute in the liquid phase. In 1909, Herbert Freundlich gave an expression representing the isothermal variation of adsorption of a quantity of gas adsorbed by unit mass of solid adsorbent with gas pressure. This equation is known as Freundlich adsorption isotherm or Freundlich adsorption equation. As this relationship is entirely empirical.

## How to Calculate Equilibrium Pressure of Gaseous Adsorbate using Freundlich Equation?

Equilibrium Pressure of Gaseous Adsorbate using Freundlich Equation calculator uses Equilibrium Pressure of the Gaseous Adsorbate = ((Mass of Adsorbate/(Mass of Adsorbent*Adsorption Constant))^Freundlich Adsorption Constant) to calculate the Equilibrium Pressure of the Gaseous Adsorbate, The Equilibrium Pressure of Gaseous Adsorbate using Freundlich Equation formula is defined as an empirical relationship between the quantity of a gas adsorbed into a solid surface and the gas pressure. Equilibrium Pressure of the Gaseous Adsorbate is denoted by p symbol.

How to calculate Equilibrium Pressure of Gaseous Adsorbate using Freundlich Equation using this online calculator? To use this online calculator for Equilibrium Pressure of Gaseous Adsorbate using Freundlich Equation, enter Mass of Adsorbate (x), Mass of Adsorbent (m), Adsorption Constant (k) & Freundlich Adsorption Constant (n) and hit the calculate button. Here is how the Equilibrium Pressure of Gaseous Adsorbate using Freundlich Equation calculation can be explained with given input values -> 3.375 = ((0.012/(0.004*2))^3).

### FAQ

What is Equilibrium Pressure of Gaseous Adsorbate using Freundlich Equation?
The Equilibrium Pressure of Gaseous Adsorbate using Freundlich Equation formula is defined as an empirical relationship between the quantity of a gas adsorbed into a solid surface and the gas pressure and is represented as p = ((x/(m*k))^n) or Equilibrium Pressure of the Gaseous Adsorbate = ((Mass of Adsorbate/(Mass of Adsorbent*Adsorption Constant))^Freundlich Adsorption Constant). Mass of Adsorbate is the amount of substance that is adsorbed, The Mass of Adsorbent is the weight of the solid material on which gas is adsorbed, The Adsorption Constant depends on the nature of the adsorbent and the gas at a particular temperature & Freundlich Adsorption Constant depends on the nature of the adsorbent and the gas at a particular temperature.
How to calculate Equilibrium Pressure of Gaseous Adsorbate using Freundlich Equation?
The Equilibrium Pressure of Gaseous Adsorbate using Freundlich Equation formula is defined as an empirical relationship between the quantity of a gas adsorbed into a solid surface and the gas pressure is calculated using Equilibrium Pressure of the Gaseous Adsorbate = ((Mass of Adsorbate/(Mass of Adsorbent*Adsorption Constant))^Freundlich Adsorption Constant). To calculate Equilibrium Pressure of Gaseous Adsorbate using Freundlich Equation, you need Mass of Adsorbate (x), Mass of Adsorbent (m), Adsorption Constant (k) & Freundlich Adsorption Constant (n). With our tool, you need to enter the respective value for Mass of Adsorbate, Mass of Adsorbent, Adsorption Constant & Freundlich Adsorption Constant and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well. Let Others Know