Partial Pressure of Species in Gas Phase by Henry Solubility Solution

STEP 0: Pre-Calculation Summary
Formula Used
Partial Pressure of that Species in Gas Phase = Concentration of Species in Aqueous Phase/Henry Solubility
Pspecies = ca/Hcp
This formula uses 3 Variables
Variables Used
Partial Pressure of that Species in Gas Phase - (Measured in Pascal) - Partial Pressure of that Species in Gas Phase is a measure of thermodynamic activity of the gas's molecules.
Concentration of Species in Aqueous Phase - (Measured in Mole per Cubic Meter) - Concentration of Species in Aqueous Phase is the concentration of species in a homogeneous part of a heterogeneous system that consists of water or a solution in water of a substance.
Henry Solubility - (Measured in Mole per Cubic Meter per Pascal) - Henry Solubility is the solubility of a gas in a liquid.
STEP 1: Convert Input(s) to Base Unit
Concentration of Species in Aqueous Phase: 0.1 Molar(M) --> 100 Mole per Cubic Meter (Check conversion ​here)
Henry Solubility: 10 Mole per Cubic Meter per Pascal --> 10 Mole per Cubic Meter per Pascal No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Pspecies = ca/Hcp --> 100/10
Evaluating ... ...
Pspecies = 10
STEP 3: Convert Result to Output's Unit
10 Pascal --> No Conversion Required
FINAL ANSWER
10 Pascal <-- Partial Pressure of that Species in Gas Phase
(Calculation completed in 00.020 seconds)

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National University of Judicial Science (NUJS), Kolkata
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Henry's law Calculators

Concentration of Species in Gaseous Phase by Dimensionless Henry Solubility
​ LaTeX ​ Go Concentration of Species in Gaseous Phase = Concentration of Species in Aqueous Phase/Dimensionless Henry Solubility
Dimensionless Henry Solubility
​ LaTeX ​ Go Dimensionless Henry Solubility = Concentration of Species in Aqueous Phase/Concentration of Species in Gaseous Phase
Concentration of Species in Aqueous Phase by Henry Solubility
​ LaTeX ​ Go Concentration of Species in Aqueous Phase = Henry Solubility*Partial Pressure of that Species in Gas Phase
Henry Solubility given Concentration
​ LaTeX ​ Go Henry Solubility = Concentration of Species in Aqueous Phase/Partial Pressure of that Species in Gas Phase

Important Formulas of Gaseous State Calculators

Final Number of Moles of Gas by Avogadro's Law
​ LaTeX ​ Go Final Moles of Gas = Final Volume of Gas/(Initial Volume of Gas/Initial Moles of Gas)
Final Volume of Gas by Avogadro's Law
​ LaTeX ​ Go Final Volume of Gas = (Initial Volume of Gas/Initial Moles of Gas)*Final Moles of Gas
Mass of Molecule of Substance using Avogadro's Number
​ LaTeX ​ Go Mass of 1 Molecule of Substance = Molar Mass/[Avaga-no]
Mass of Atom of Element using Avogadro's Number
​ LaTeX ​ Go Mass of 1 Atom of Element = Gram Atomic Mass/[Avaga-no]

Henry's law Calculators

Henry Solubility via Aqueous-Phase Mixing Ratio
​ LaTeX ​ Go Henry Solubility via Aqueous-Phase Mixing Ratio = Molar Mixing Ratio in Aqueous Phase/Partial Pressure of that Species in Gas Phase
Dimensionless Henry Solubility
​ LaTeX ​ Go Dimensionless Henry Solubility = Concentration of Species in Aqueous Phase/Concentration of Species in Gaseous Phase
Concentration of Species in Aqueous Phase by Henry Solubility
​ LaTeX ​ Go Concentration of Species in Aqueous Phase = Henry Solubility*Partial Pressure of that Species in Gas Phase
Henry Solubility given Concentration
​ LaTeX ​ Go Henry Solubility = Concentration of Species in Aqueous Phase/Partial Pressure of that Species in Gas Phase

Partial Pressure of Species in Gas Phase by Henry Solubility Formula

​LaTeX ​Go
Partial Pressure of that Species in Gas Phase = Concentration of Species in Aqueous Phase/Henry Solubility
Pspecies = ca/Hcp

What is Henry's Law ?

In physical chemistry, Henry's law is a gas law that states that the amount of dissolved gas in a liquid is proportional to its partial pressure above the liquid. The proportionality factor is called Henry's law constant. It was formulated by the English chemist William Henry, who studied the topic in the early 19th century. In his publication about the quantity of gases absorbed by water.

How to Calculate Partial Pressure of Species in Gas Phase by Henry Solubility?

Partial Pressure of Species in Gas Phase by Henry Solubility calculator uses Partial Pressure of that Species in Gas Phase = Concentration of Species in Aqueous Phase/Henry Solubility to calculate the Partial Pressure of that Species in Gas Phase, The Partial Pressure of Species in Gas phase by Henry Solubility formula is defined as the measure of partial pressure of species in gaseous phase which depends on concentration of that species and henry solubility. Partial Pressure of that Species in Gas Phase is denoted by Pspecies symbol.

How to calculate Partial Pressure of Species in Gas Phase by Henry Solubility using this online calculator? To use this online calculator for Partial Pressure of Species in Gas Phase by Henry Solubility, enter Concentration of Species in Aqueous Phase (ca) & Henry Solubility (Hcp) and hit the calculate button. Here is how the Partial Pressure of Species in Gas Phase by Henry Solubility calculation can be explained with given input values -> 800 = 100/10.

FAQ

What is Partial Pressure of Species in Gas Phase by Henry Solubility?
The Partial Pressure of Species in Gas phase by Henry Solubility formula is defined as the measure of partial pressure of species in gaseous phase which depends on concentration of that species and henry solubility and is represented as Pspecies = ca/Hcp or Partial Pressure of that Species in Gas Phase = Concentration of Species in Aqueous Phase/Henry Solubility. Concentration of Species in Aqueous Phase is the concentration of species in a homogeneous part of a heterogeneous system that consists of water or a solution in water of a substance & Henry Solubility is the solubility of a gas in a liquid.
How to calculate Partial Pressure of Species in Gas Phase by Henry Solubility?
The Partial Pressure of Species in Gas phase by Henry Solubility formula is defined as the measure of partial pressure of species in gaseous phase which depends on concentration of that species and henry solubility is calculated using Partial Pressure of that Species in Gas Phase = Concentration of Species in Aqueous Phase/Henry Solubility. To calculate Partial Pressure of Species in Gas Phase by Henry Solubility, you need Concentration of Species in Aqueous Phase (ca) & Henry Solubility (Hcp). With our tool, you need to enter the respective value for Concentration of Species in Aqueous Phase & Henry Solubility and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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