Number of Phases in Equilibrium for Non-Reactive Systems Solution

STEP 0: Pre-Calculation Summary
Formula Used
Number of Phases = Number of Components-Degree of Freedom+2
P = C-F+2
This formula uses 3 Variables
Variables Used
Number of Phases - Number of Phases refers to the number of distinct thermodynamic phase in which the atom can exist.
Number of Components - The Number of Components is the number of chemically independent constituents of the system.
Degree of Freedom - Degree of Freedom is an independent physical parameter in the formal description of the state of a physical system.
STEP 1: Convert Input(s) to Base Unit
Number of Components: 4 --> No Conversion Required
Degree of Freedom: 2 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
P = C-F+2 --> 4-2+2
Evaluating ... ...
P = 4
STEP 3: Convert Result to Output's Unit
4 --> No Conversion Required
FINAL ANSWER
4 <-- Number of Phases
(Calculation completed in 00.004 seconds)

Credits

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Created by Akshada Kulkarni
National Institute of Information Technology (NIIT), Neemrana
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Indian Institute of Technology (IIT), Kanpur
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​ Go Molal Liquid Volume = Molar Volume-((Change in Temperature*Molal Heat of Vaporization)/(Change in Pressure*Absolute Temperature))
Mole Fraction of A in Liquid in Raoult's Law
​ Go Mole Fraction of Component A in Liquid Phase = Partial Pressure/Vapor Pressure of Pure Component A
Number of Phases in Equilibrium for Non-Reactive Systems
​ Go Number of Phases = Number of Components-Degree of Freedom+2

Number of Phases in Equilibrium for Non-Reactive Systems Formula

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

What is the Gibbs phase rule?

The phase rule is a general principle governing "pVT systems" in thermodynamic equilibrium, whose states are completely described by the variables pressure (p), volume (V), and temperature (T). At equilibrium the number of independent variables (F ) required to specify the system is equal to the number of components (C) minus the number of phases (P) plus two, or symbolically F = C - P + 2. This form of the phase rule applies to non-reactive systems.

How to Calculate Number of Phases in Equilibrium for Non-Reactive Systems?

Number of Phases in Equilibrium for Non-Reactive Systems calculator uses Number of Phases = Number of Components-Degree of Freedom+2 to calculate the Number of Phases, The Number of Phases in Equilibrium for Non-Reactive Systems is a form of matter that is homogeneous in chemical composition and physical state. Typical phases are solid, liquid, and gas. Number of Phases is denoted by P symbol.

How to calculate Number of Phases in Equilibrium for Non-Reactive Systems using this online calculator? To use this online calculator for Number of Phases in Equilibrium for Non-Reactive Systems, enter Number of Components (C) & Degree of Freedom (F) and hit the calculate button. Here is how the Number of Phases in Equilibrium for Non-Reactive Systems calculation can be explained with given input values -> 4 = 4-2+2.

FAQ

What is Number of Phases in Equilibrium for Non-Reactive Systems?
The Number of Phases in Equilibrium for Non-Reactive Systems is a form of matter that is homogeneous in chemical composition and physical state. Typical phases are solid, liquid, and gas and is represented as P = C-F+2 or Number of Phases = Number of Components-Degree of Freedom+2. The Number of Components is the number of chemically independent constituents of the system & Degree of Freedom is an independent physical parameter in the formal description of the state of a physical system.
How to calculate Number of Phases in Equilibrium for Non-Reactive Systems?
The Number of Phases in Equilibrium for Non-Reactive Systems is a form of matter that is homogeneous in chemical composition and physical state. Typical phases are solid, liquid, and gas is calculated using Number of Phases = Number of Components-Degree of Freedom+2. To calculate Number of Phases in Equilibrium for Non-Reactive Systems, you need Number of Components (C) & Degree of Freedom (F). With our tool, you need to enter the respective value for Number of Components & Degree of Freedom 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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