Change in Vapour Pressure given Evaporation Loss Per Month Solution

STEP 0: Pre-Calculation Summary
Formula Used
Change in Vapour Pressure = Evaporation Loss per Month/(Meyer's Constant*(1+(Mean Wind Velocity/16)))
δV = Em/(C*(1+(u/16)))
This formula uses 4 Variables
Variables Used
Change in Vapour Pressure - (Measured in Centimeter Mercury (0 °C)) - Change in Vapour Pressure refers to the difference between maximum vapour pressure and actual vapour pressure.
Evaporation Loss per Month - (Measured in Meter) - Evaporation Loss per Month refer to the amount of water that transitions from liquid to vapor and escapes into the atmosphere over a specific time period, typically measured on a monthly basis.
Meyer's Constant - The Meyer's Constant refers to an empirical coefficient in the Meyer evaporation formula, 1.1 for deep water and 1.5 for shallow water.
Mean Wind Velocity - (Measured in Centimeter per Second) - Mean Wind Velocity refers to the wind in kilometers per hour at a height of about 9 meters above the ground.
STEP 1: Convert Input(s) to Base Unit
Evaporation Loss per Month: 8.2 Centimeter --> 0.082 Meter (Check conversion ​here)
Meyer's Constant: 0.36 --> No Conversion Required
Mean Wind Velocity: 8 Kilometer per Hour --> 222.222222222222 Centimeter per Second (Check conversion ​here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
δV = Em/(C*(1+(u/16))) --> 0.082/(0.36*(1+(222.222222222222/16)))
Evaluating ... ...
δV = 0.0152985074626866
STEP 3: Convert Result to Output's Unit
20.396276119403 Pascal -->0.0152985074626866 Centimeter Mercury (0 °C) (Check conversion ​here)
FINAL ANSWER
0.0152985074626866 0.015299 Centimeter Mercury (0 °C) <-- Change in Vapour Pressure
(Calculation completed in 00.004 seconds)

Credits

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Created by Suraj Kumar
Birsa Institute of Technology (BIT), Sindri
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Meerut Institute of Engineering and Technology (MIET), Meerut
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Evaporation and Transpiration Calculators

Monthly Mean Wind Velocity given Evaporation Loss Per Month
​ LaTeX ​ Go Mean Wind Velocity = ((Evaporation Loss per Month/(Meyer's Constant*(Maximum Vapour Pressure-Actual Vapour Pressure)))-1)*16
Maximum Vapour Pressure given Evaporation Loss Per Month
​ LaTeX ​ Go Maximum Vapour Pressure = Actual Vapour Pressure+(Evaporation Loss per Month/(Meyer's Constant*(1+(Mean Wind Velocity/16))))
Actual Vapour Pressure given Evaporation Loss Per Month
​ LaTeX ​ Go Actual Vapour Pressure = Maximum Vapour Pressure-(Evaporation Loss per Month/(Meyer's Constant*(1+(Mean Wind Velocity/16))))
Evaporation Loss Per Month
​ LaTeX ​ Go Evaporation Loss per Month = Meyer's Constant*(Maximum Vapour Pressure-Actual Vapour Pressure)*(1+(Mean Wind Velocity/16))

Change in Vapour Pressure given Evaporation Loss Per Month Formula

​LaTeX ​Go
Change in Vapour Pressure = Evaporation Loss per Month/(Meyer's Constant*(1+(Mean Wind Velocity/16)))
δV = Em/(C*(1+(u/16)))

What is Vapour Pressure ?

Vapour pressure is a measure of the tendency of a material to change into the gaseous or vapour state, and it increases with temperature.

How to Calculate Change in Vapour Pressure given Evaporation Loss Per Month?

Change in Vapour Pressure given Evaporation Loss Per Month calculator uses Change in Vapour Pressure = Evaporation Loss per Month/(Meyer's Constant*(1+(Mean Wind Velocity/16))) to calculate the Change in Vapour Pressure, The Change in Vapour Pressure given Evaporation Loss Per Month is defined as the difference between maximum vapour pressure and actual vapour pressure. Change in Vapour Pressure is denoted by δV symbol.

How to calculate Change in Vapour Pressure given Evaporation Loss Per Month using this online calculator? To use this online calculator for Change in Vapour Pressure given Evaporation Loss Per Month, enter Evaporation Loss per Month (Em), Meyer's Constant (C) & Mean Wind Velocity (u) and hit the calculate button. Here is how the Change in Vapour Pressure given Evaporation Loss Per Month calculation can be explained with given input values -> 1.1E-5 = 0.082/(0.36*(1+(2.22222222222222/16))).

FAQ

What is Change in Vapour Pressure given Evaporation Loss Per Month?
The Change in Vapour Pressure given Evaporation Loss Per Month is defined as the difference between maximum vapour pressure and actual vapour pressure and is represented as δV = Em/(C*(1+(u/16))) or Change in Vapour Pressure = Evaporation Loss per Month/(Meyer's Constant*(1+(Mean Wind Velocity/16))). Evaporation Loss per Month refer to the amount of water that transitions from liquid to vapor and escapes into the atmosphere over a specific time period, typically measured on a monthly basis, The Meyer's Constant refers to an empirical coefficient in the Meyer evaporation formula, 1.1 for deep water and 1.5 for shallow water & Mean Wind Velocity refers to the wind in kilometers per hour at a height of about 9 meters above the ground.
How to calculate Change in Vapour Pressure given Evaporation Loss Per Month?
The Change in Vapour Pressure given Evaporation Loss Per Month is defined as the difference between maximum vapour pressure and actual vapour pressure is calculated using Change in Vapour Pressure = Evaporation Loss per Month/(Meyer's Constant*(1+(Mean Wind Velocity/16))). To calculate Change in Vapour Pressure given Evaporation Loss Per Month, you need Evaporation Loss per Month (Em), Meyer's Constant (C) & Mean Wind Velocity (u). With our tool, you need to enter the respective value for Evaporation Loss per Month, Meyer's Constant & Mean Wind Velocity 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 Change in Vapour Pressure?
In this formula, Change in Vapour Pressure uses Evaporation Loss per Month, Meyer's Constant & Mean Wind Velocity. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Change in Vapour Pressure = Evaporation Loss per Day/(Rohwer's Formula Constant*(1.465-(0.00732*Atmospheric Pressure))*(0.44+(0.0732*Mean Wind Velocity)))
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