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Critical Oxygen Deficit is referred as the condition where the deoxygenation rate exceeds the reoxygenation rate. Check FAQs
Dc=(Ltf)f1-(f-1)Do
Dc - Critical Oxygen Deficit?Lt - Oxygen Equivalent?f - Self-Purification Constant?Do - Initial Oxygen Deficit?

Critical Oxygen Deficit in First Stage Equation Example

With values
With units
Only example

Here is how the Critical Oxygen Deficit in First Stage Equation equation looks like with Values.

Here is how the Critical Oxygen Deficit in First Stage Equation equation looks like with Units.

Here is how the Critical Oxygen Deficit in First Stage Equation equation looks like.

0.0005Edit=(0.21Edit0.9Edit)0.9Edit1-(0.9Edit-1)7.2Edit
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Critical Oxygen Deficit in First Stage Equation Solution

Follow our step by step solution on how to calculate Critical Oxygen Deficit in First Stage Equation?

FIRST Step Consider the formula
Dc=(Ltf)f1-(f-1)Do
Next Step Substitute values of Variables
Dc=(0.21mg/L0.9)0.91-(0.9-1)7.2mg/L
Next Step Convert Units
Dc=(0.0002kg/m³0.9)0.91-(0.9-1)0.0072kg/m³
Next Step Prepare to Evaluate
Dc=(0.00020.9)0.91-(0.9-1)0.0072
Next Step Evaluate
Dc=0.000538104380213424
LAST Step Rounding Answer
Dc=0.0005

Critical Oxygen Deficit in First Stage Equation Formula Elements

Variables
Critical Oxygen Deficit
Critical Oxygen Deficit is referred as the condition where the deoxygenation rate exceeds the reoxygenation rate.
Symbol: Dc
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.
Oxygen Equivalent
The Oxygen Equivalent is referred as the oxidizable organic matter present in sewage.
Symbol: Lt
Measurement: DensityUnit: mg/L
Note: Value should be greater than 0.
Self-Purification Constant
Self-Purification Constant is referred as the ratio of reoxygenation constant to deoxygenation constant.
Symbol: f
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.
Initial Oxygen Deficit
Initial Oxygen Deficit is referred as the amount of oxygen required at initial levels.
Symbol: Do
Measurement: DensityUnit: mg/L
Note: Value should be greater than 0.

Other Formulas to find Critical Oxygen Deficit

​Go Critical Oxygen Deficit
Dc=KDLt10-KDtcKR
​Go Critical Oxygen Deficit given Self Purification Constant
Dc=Lt10-KDtcf

How to Evaluate Critical Oxygen Deficit in First Stage Equation?

Critical Oxygen Deficit in First Stage Equation evaluator uses Critical Oxygen Deficit = ((Oxygen Equivalent/Self-Purification Constant)^Self-Purification Constant)/(1-(Self-Purification Constant-1)*Initial Oxygen Deficit) to evaluate the Critical Oxygen Deficit, The Critical Oxygen Deficit in First Stage Equation formula is defined as the condition where the deoxygenation rate exceeds the reoxygenation rate. Critical Oxygen Deficit is denoted by Dc symbol.

How to evaluate Critical Oxygen Deficit in First Stage Equation using this online evaluator? To use this online evaluator for Critical Oxygen Deficit in First Stage Equation, enter Oxygen Equivalent (Lt), Self-Purification Constant (f) & Initial Oxygen Deficit (Do) and hit the calculate button.

FAQs on Critical Oxygen Deficit in First Stage Equation

What is the formula to find Critical Oxygen Deficit in First Stage Equation?
The formula of Critical Oxygen Deficit in First Stage Equation is expressed as Critical Oxygen Deficit = ((Oxygen Equivalent/Self-Purification Constant)^Self-Purification Constant)/(1-(Self-Purification Constant-1)*Initial Oxygen Deficit). Here is an example- 0.008418 = ((0.00021/0.9)^0.9)/(1-(0.9-1)*0.0072).
How to calculate Critical Oxygen Deficit in First Stage Equation?
With Oxygen Equivalent (Lt), Self-Purification Constant (f) & Initial Oxygen Deficit (Do) we can find Critical Oxygen Deficit in First Stage Equation using the formula - Critical Oxygen Deficit = ((Oxygen Equivalent/Self-Purification Constant)^Self-Purification Constant)/(1-(Self-Purification Constant-1)*Initial Oxygen Deficit).
What are the other ways to Calculate Critical Oxygen Deficit?
Here are the different ways to Calculate Critical Oxygen Deficit-
  • Critical Oxygen Deficit=Deoxygenation Constant*Oxygen Equivalent*(10^(-Deoxygenation Constant*Critical Time))/Reoxygenation CoefficientOpenImg
  • Critical Oxygen Deficit=Oxygen Equivalent*(10^(-Deoxygenation Constant*Critical Time))/Self-Purification ConstantOpenImg
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