Period of Incubation given Relative Stability Solution

STEP 0: Pre-Calculation Summary
Formula Used
Time in days = ln(1-(Relative Stability/100))/ln(0.794)
t = ln(1-(%S/100))/ln(0.794)
This formula uses 1 Functions, 2 Variables
Functions Used
ln - The natural logarithm, also known as the logarithm to the base e, is the inverse function of the natural exponential function., ln(Number)
Variables Used
Time in days - (Measured in Day) - Time in days is the time calculated in days.
Relative Stability - Relative Stability (in %) is the ratio of oxygen available to the total oxygen required to satisfy first-stage BOD demand.
STEP 1: Convert Input(s) to Base Unit
Relative Stability: 90 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
t = ln(1-(%S/100))/ln(0.794) --> ln(1-(90/100))/ln(0.794)
Evaluating ... ...
t = 9.98208240435893
STEP 3: Convert Result to Output's Unit
862451.919736611 Second -->9.98208240435893 Day (Check conversion here)
FINAL ANSWER
9.98208240435893 9.982082 Day <-- Time in days
(Calculation completed in 00.004 seconds)

Credits

Created by Ishita Goyal
Meerut Institute of Engineering and Technology (MIET), Meerut
Ishita Goyal has created this Calculator and 500+ more calculators!
Verified by Suraj Kumar
Birsa Institute of Technology (BIT), Sindri
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4 Relative Stability Calculators

Period of Incubation given Relative Stability at 37 degree Celsius
Go Time in days = ln(1-(Relative Stability/100))/ln(0.630)
Period of Incubation given Relative Stability
Go Time in days = ln(1-(Relative Stability/100))/ln(0.794)
Relative Stability
Go Relative Stability = 100*(1-(0.794)^Time in days)
Relative Stability at 37 Degree Celsius
Go Relative Stability = 100*(1-(0.63)^Time in days)

Period of Incubation given Relative Stability Formula

Time in days = ln(1-(Relative Stability/100))/ln(0.794)
t = ln(1-(%S/100))/ln(0.794)

What is Relative Stability?

The Relative stability is the ratio of oxygen available in effluent to the total oxygen required to satisfy the first stage bod demand.

How to Calculate Period of Incubation given Relative Stability?

Period of Incubation given Relative Stability calculator uses Time in days = ln(1-(Relative Stability/100))/ln(0.794) to calculate the Time in days, The Period of Incubation given Relative Stability is defined as the provided is the total time required in days to decolorize a standard volume of methylene blue solution when incubated at 20°C. Time in days is denoted by t symbol.

How to calculate Period of Incubation given Relative Stability using this online calculator? To use this online calculator for Period of Incubation given Relative Stability, enter Relative Stability (%S) and hit the calculate button. Here is how the Period of Incubation given Relative Stability calculation can be explained with given input values -> 0.000116 = ln(1-(90/100))/ln(0.794).

FAQ

What is Period of Incubation given Relative Stability?
The Period of Incubation given Relative Stability is defined as the provided is the total time required in days to decolorize a standard volume of methylene blue solution when incubated at 20°C and is represented as t = ln(1-(%S/100))/ln(0.794) or Time in days = ln(1-(Relative Stability/100))/ln(0.794). Relative Stability (in %) is the ratio of oxygen available to the total oxygen required to satisfy first-stage BOD demand.
How to calculate Period of Incubation given Relative Stability?
The Period of Incubation given Relative Stability is defined as the provided is the total time required in days to decolorize a standard volume of methylene blue solution when incubated at 20°C is calculated using Time in days = ln(1-(Relative Stability/100))/ln(0.794). To calculate Period of Incubation given Relative Stability, you need Relative Stability (%S). With our tool, you need to enter the respective value for Relative Stability and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Time in days?
In this formula, Time in days uses Relative Stability. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Time in days = ln(1-(Relative Stability/100))/ln(0.630)
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