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Reactant Conversion gives us the percentage of reactants converted into products. Enter the percentage as a decimal between 0 and 1. Check FAQs
XA=1-(CCo)
XA - Reactant Conversion?C - Reactant Concentration?Co - Initial Reactant Concentration?

Reactant Conversion using Reactant Concentration Example

With values
With units
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Here is how the Reactant Conversion using Reactant Concentration equation looks like with Values.

Here is how the Reactant Conversion using Reactant Concentration equation looks like with Units.

Here is how the Reactant Conversion using Reactant Concentration equation looks like.

0.7Edit=1-(24Edit80Edit)
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Reactant Conversion using Reactant Concentration Solution

Follow our step by step solution on how to calculate Reactant Conversion using Reactant Concentration?

FIRST Step Consider the formula
XA=1-(CCo)
Next Step Substitute values of Variables
XA=1-(24mol/m³80mol/m³)
Next Step Prepare to Evaluate
XA=1-(2480)
LAST Step Evaluate
XA=0.7

Reactant Conversion using Reactant Concentration Formula Elements

Variables
Reactant Conversion
Reactant Conversion gives us the percentage of reactants converted into products. Enter the percentage as a decimal between 0 and 1.
Symbol: XA
Measurement: NAUnit: Unitless
Note: Value should be less than 1.
Reactant Concentration
The Reactant Concentration refers to the amount of reactant present in the solvent at any given point of time during the process.
Symbol: C
Measurement: Molar ConcentrationUnit: mol/m³
Note: Value should be greater than 0.
Initial Reactant Concentration
The Initial Reactant Concentration refers to the amount of reactant present in the solvent before the considered process.
Symbol: Co
Measurement: Molar ConcentrationUnit: mol/m³
Note: Value should be greater than 0.

Other Formulas to find Reactant Conversion

​Go Initial Reactant Conversion using Reactant Concentration with Varying Density
XA=Co-CCo+εC

Other formulas in Basics of Chemical Reaction Engineering category

​Go Initial Key Reactant Concentration with Varying Density,Temperature and Total Pressure
Ckey0=Ckey(1+εXkey1-Xkey)(TCREπ0T0π)
​Go Initial Reactant Concentration using Reactant Conversion
Co=C1-XA
​Go Initial Reactant Concentration using Reactant Conversion with Varying Density
IntialConc=(C)(1+εXA)1-XA
​Go Key Reactant Concentration with Varying Density,Temperature and Total Pressure
Ckey=Ckey0(1-Xkey1+εXkey)(T0πTCREπ0)

How to Evaluate Reactant Conversion using Reactant Concentration?

Reactant Conversion using Reactant Concentration evaluator uses Reactant Conversion = 1-(Reactant Concentration/Initial Reactant Concentration) to evaluate the Reactant Conversion, The Reactant Conversion using Reactant Concentration formula is defined as the disappearance of reactants during reaction. Conversion is defined only for the Reactants not for products. It is a basic term in a Chemical kinetics and plays a vital role in the Chemical Reaction Engineering. Reactant Conversion is denoted by XA symbol.

How to evaluate Reactant Conversion using Reactant Concentration using this online evaluator? To use this online evaluator for Reactant Conversion using Reactant Concentration, enter Reactant Concentration (C) & Initial Reactant Concentration (Co) and hit the calculate button.

FAQs on Reactant Conversion using Reactant Concentration

What is the formula to find Reactant Conversion using Reactant Concentration?
The formula of Reactant Conversion using Reactant Concentration is expressed as Reactant Conversion = 1-(Reactant Concentration/Initial Reactant Concentration). Here is an example- 0.7 = 1-(24/80).
How to calculate Reactant Conversion using Reactant Concentration?
With Reactant Concentration (C) & Initial Reactant Concentration (Co) we can find Reactant Conversion using Reactant Concentration using the formula - Reactant Conversion = 1-(Reactant Concentration/Initial Reactant Concentration).
What are the other ways to Calculate Reactant Conversion?
Here are the different ways to Calculate Reactant Conversion-
  • Reactant Conversion=(Initial Reactant Concentration-Reactant Concentration)/(Initial Reactant Concentration+Fractional Volume Change*Reactant Concentration)OpenImg
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