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Organic Loading is defined as the application of soluble and particulate organic matter. Check FAQs
VL=((100E1)-10.0044)2
VL - Organic Loading?E1 - Efficiency of First Filter Stage?

Unit Organic Loading using Efficiency of Filter Example

With values
With units
Only example

Here is how the Unit Organic Loading using Efficiency of Filter equation looks like with Values.

Here is how the Unit Organic Loading using Efficiency of Filter equation looks like with Units.

Here is how the Unit Organic Loading using Efficiency of Filter equation looks like.

1.3043Edit=((10099.5Edit)-10.0044)2
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Unit Organic Loading using Efficiency of Filter Solution

Follow our step by step solution on how to calculate Unit Organic Loading using Efficiency of Filter?

FIRST Step Consider the formula
VL=((100E1)-10.0044)2
Next Step Substitute values of Variables
VL=((10099.5)-10.0044)2
Next Step Prepare to Evaluate
VL=((10099.5)-10.0044)2
Next Step Evaluate
VL=0.00130433303608448kg/m³
Next Step Convert to Output's Unit
VL=1.30433303608448mg/L
LAST Step Rounding Answer
VL=1.3043mg/L

Unit Organic Loading using Efficiency of Filter Formula Elements

Variables
Organic Loading
Organic Loading is defined as the application of soluble and particulate organic matter.
Symbol: VL
Measurement: DensityUnit: mg/L
Note: Value should be greater than 0.
Efficiency of First Filter Stage
Efficiency of first filter stage calculates the efficiency of the filter at the first stage.
Symbol: E1
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.

Other Formulas to find Organic Loading

​Go Unit Organic Loading on Filter
VL=(YVTF)

Other formulas in Efficiency of High Rate Filters category

​Go Recirculation Factor given Recirculation Ratio
F=1+α(1+0.1α)2
​Go Recirculation Factor given Volume of Raw Sewage
F=1+(RI)(1+0.1(RI))2
​Go Recirculation Ratio given Volume of Raw Sewage
α=RI
​Go Volume of Raw Sewage given Recirculation Ratio
I=Rα

How to Evaluate Unit Organic Loading using Efficiency of Filter?

Unit Organic Loading using Efficiency of Filter evaluator uses Organic Loading = (((100/Efficiency of First Filter Stage)-1)/0.0044)^2 to evaluate the Organic Loading, The Unit Organic Loading using Efficiency of Filter formula is defined as the amount of organic material (often measured in terms of biochemical oxygen demand or BOD) that is applied per unit area of the filter media over a specified time period, considering efficiency of filter. Organic Loading is denoted by VL symbol.

How to evaluate Unit Organic Loading using Efficiency of Filter using this online evaluator? To use this online evaluator for Unit Organic Loading using Efficiency of Filter, enter Efficiency of First Filter Stage (E1) and hit the calculate button.

FAQs on Unit Organic Loading using Efficiency of Filter

What is the formula to find Unit Organic Loading using Efficiency of Filter?
The formula of Unit Organic Loading using Efficiency of Filter is expressed as Organic Loading = (((100/Efficiency of First Filter Stage)-1)/0.0044)^2. Here is an example- 1304.333 = (((100/99.5)-1)/0.0044)^2.
How to calculate Unit Organic Loading using Efficiency of Filter?
With Efficiency of First Filter Stage (E1) we can find Unit Organic Loading using Efficiency of Filter using the formula - Organic Loading = (((100/Efficiency of First Filter Stage)-1)/0.0044)^2.
What are the other ways to Calculate Organic Loading?
Here are the different ways to Calculate Organic Loading-
  • Organic Loading=(Total Organic Load/(Volume*Recirculation Factor))OpenImg
Can the Unit Organic Loading using Efficiency of Filter be negative?
No, the Unit Organic Loading using Efficiency of Filter, measured in Density cannot be negative.
Which unit is used to measure Unit Organic Loading using Efficiency of Filter?
Unit Organic Loading using Efficiency of Filter is usually measured using the Milligram per Liter[mg/L] for Density. Kilogram per Cubic Meter[mg/L], Kilogram per Cubic Centimeter[mg/L], Gram per Cubic Meter[mg/L] are the few other units in which Unit Organic Loading using Efficiency of Filter can be measured.
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