## Degrees of Freedom of Multi Component System Solution

STEP 0: Pre-Calculation Summary
Formula Used
Degree of Freedom = Number of Components-Number of Phases+2
F = NC-P+2
This formula uses 3 Variables
Variables Used
Degree of Freedom - Degree of Freedom is an independent physical parameter in the formal description of the state of a physical system.
Number of Components - Number of Components is the number of individual components of an atom.
Number of Phases - Number of Phases refers to the number of distinct thermodynamic phase in which the atom can exist.
STEP 1: Convert Input(s) to Base Unit
Number of Components: 4 --> No Conversion Required
Number of Phases: 2 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
F = NC-P+2 --> 4-2+2
Evaluating ... ...
F = 4
STEP 3: Convert Result to Output's Unit
4 --> No Conversion Required
4 <-- Degree of Freedom
(Calculation completed in 00.001 seconds)
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## Credits

Created by Prerana Bakli
National Institute of Technology (NIT), Meghalaya
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## < 4 Multi Component System Calculators

Number of Components Considering Reactions and Constraints
Number of Components = Number of Chemical Species-Number of Constraints-Number of Reactions Go
Number of Components of Multi Component System
Number of Components = Degree of Freedom+Number of Phases-2 Go
Degrees of Freedom of Multi Component System
Degree of Freedom = Number of Components-Number of Phases+2 Go
Number of Phases of Multi Component System
Number of Phases = Number of Components-Degree of Freedom+2 Go

## < 3 Multi Component System Calculators

Number of Components of Multi Component System
Number of Components = Degree of Freedom+Number of Phases-2 Go
Degrees of Freedom of Multi Component System
Degree of Freedom = Number of Components-Number of Phases+2 Go
Number of Phases of Multi Component System
Number of Phases = Number of Components-Degree of Freedom+2 Go

## Degrees of Freedom of Multi Component System Formula

Degree of Freedom = Number of Components-Number of Phases+2
F = NC-P+2

## What is Gibb's Phase Rule?

The phase rule is a general principle governing "pVT systems" in thermodynamic equilibrium, whose states are completely described by the variables pressure, volume (V) and temperature. If F is the number of degrees of freedom, C is the number of components and P is the number of phases, then F = C - P + 2.

## How to Calculate Degrees of Freedom of Multi Component System?

Degrees of Freedom of Multi Component System calculator uses Degree of Freedom = Number of Components-Number of Phases+2 to calculate the Degree of Freedom, The Degrees of Freedom of Multi Component System which is calculated using Gibb's Phase Rule is the number of intensive variables which are independent of each other. Degree of Freedom is denoted by F symbol.

How to calculate Degrees of Freedom of Multi Component System using this online calculator? To use this online calculator for Degrees of Freedom of Multi Component System, enter Number of Components (NC) & Number of Phases (P) and hit the calculate button. Here is how the Degrees of Freedom of Multi Component System calculation can be explained with given input values -> 4 = 4-2+2.

### FAQ

What is Degrees of Freedom of Multi Component System?
The Degrees of Freedom of Multi Component System which is calculated using Gibb's Phase Rule is the number of intensive variables which are independent of each other and is represented as F = NC-P+2 or Degree of Freedom = Number of Components-Number of Phases+2. Number of Components is the number of individual components of an atom & Number of Phases refers to the number of distinct thermodynamic phase in which the atom can exist.
How to calculate Degrees of Freedom of Multi Component System?
The Degrees of Freedom of Multi Component System which is calculated using Gibb's Phase Rule is the number of intensive variables which are independent of each other is calculated using Degree of Freedom = Number of Components-Number of Phases+2. To calculate Degrees of Freedom of Multi Component System, you need Number of Components (NC) & Number of Phases (P). With our tool, you need to enter the respective value for Number of Components & Number of Phases 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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