Run-off in cm by Khosla's Formula Solution

STEP 0: Pre-Calculation Summary
Formula Used
Runoff Depth = Rainfall Depth in Centimeters-((Temperature-32)/3.74)
Rcm = Pcm-((T-32)/3.74)
This formula uses 3 Variables
Variables Used
Runoff Depth - (Measured in Meter) - Runoff Depth at the measuring point in the receiving water results in the arithmetical mean of the values of the total runoff depth.
Rainfall Depth in Centimeters - (Measured in Meter) - Rainfall Depth in Centimeters is the total amount of rain falling over a catchment area in terms of depth.
Temperature - (Measured in Kelvin) - Temperature is the degree or intensity of heat present in a substance or object.
STEP 1: Convert Input(s) to Base Unit
Rainfall Depth in Centimeters: 10 Centimeter --> 0.1 Meter (Check conversion ​here)
Temperature: 32.3 Kelvin --> 32.3 Kelvin No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Rcm = Pcm-((T-32)/3.74) --> 0.1-((32.3-32)/3.74)
Evaluating ... ...
Rcm = 0.0197860962566853
STEP 3: Convert Result to Output's Unit
0.0197860962566853 Meter -->1.97860962566853 Centimeter (Check conversion ​here)
FINAL ANSWER
1.97860962566853 1.97861 Centimeter <-- Runoff Depth
(Calculation completed in 00.004 seconds)

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6 Khosla's Formula Calculators

Mean Temperature in Entire Catchment given Run-off
​ Go Temperature = ((Rainfall Depth in Centimeters-Runoff Depth in Inches)*9.5)+32
Mean Temperature in Entire Catchment given Run-off in cm
​ Go Temperature = ((Rainfall Depth in Centimeters-Runoff Depth)*3.74)+32
Rainfall in cm by Khosla's Formula
​ Go Rainfall Depth in Centimeters = Runoff Depth+((Temperature-32)/3.74)
Run-off in cm by Khosla's Formula
​ Go Runoff Depth = Rainfall Depth in Centimeters-((Temperature-32)/3.74)
Rainfall in Inches by Khosla's Formula
​ Go Rainfall Depth = Runoff Depth in Inches+((Temperature-32)/9.5)
Run-off in Inches by Khosla's Formula
​ Go Runoff Depth in Inches = Rainfall Depth-((Temperature-32)/9.5)

Run-off in cm by Khosla's Formula Formula

Runoff Depth = Rainfall Depth in Centimeters-((Temperature-32)/3.74)
Rcm = Pcm-((T-32)/3.74)

What is Runoff ?

Runoff occurs when there is more water than land can absorb. The excess liquid flows across the surface of the land and into nearby creeks, streams, or ponds.

How to Calculate Run-off in cm by Khosla's Formula?

Run-off in cm by Khosla's Formula calculator uses Runoff Depth = Rainfall Depth in Centimeters-((Temperature-32)/3.74) to calculate the Runoff Depth, The Run-off in cm by Khosla's Formula is defined as the value of runoff depth when we have prior information of other parameters used. Runoff Depth is denoted by Rcm symbol.

How to calculate Run-off in cm by Khosla's Formula using this online calculator? To use this online calculator for Run-off in cm by Khosla's Formula, enter Rainfall Depth in Centimeters (Pcm) & Temperature (T) and hit the calculate button. Here is how the Run-off in cm by Khosla's Formula calculation can be explained with given input values -> 109.6257 = 0.1-((32.3-32)/3.74).

FAQ

What is Run-off in cm by Khosla's Formula?
The Run-off in cm by Khosla's Formula is defined as the value of runoff depth when we have prior information of other parameters used and is represented as Rcm = Pcm-((T-32)/3.74) or Runoff Depth = Rainfall Depth in Centimeters-((Temperature-32)/3.74). Rainfall Depth in Centimeters is the total amount of rain falling over a catchment area in terms of depth & Temperature is the degree or intensity of heat present in a substance or object.
How to calculate Run-off in cm by Khosla's Formula?
The Run-off in cm by Khosla's Formula is defined as the value of runoff depth when we have prior information of other parameters used is calculated using Runoff Depth = Rainfall Depth in Centimeters-((Temperature-32)/3.74). To calculate Run-off in cm by Khosla's Formula, you need Rainfall Depth in Centimeters (Pcm) & Temperature (T). With our tool, you need to enter the respective value for Rainfall Depth in Centimeters & Temperature 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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