Precipitation given Change in Moisture Storage Solution

STEP 0: Pre-Calculation Summary
Formula Used
Precipitation = Change in Moisture Storage+Surface Runoff+Subsurface Outflow+Actual Evapotranspiration
P = ΔS+Sr+Go+Eact
This formula uses 5 Variables
Variables Used
Precipitation - (Measured in Meter) - Precipitation is the primary water input to the hydrologic cycle and is evaluated for all water budget calculations.
Change in Moisture Storage - (Measured in Meter) - Change in Moisture Storage is the total amount of water that is stored within the specified reservoir or catchment area.
Surface Runoff - (Measured in Cubic Meter per Second) - Surface Runoff water, from rain, snowmelt, or other sources, that flows over the land surface, and is a major component of the water cycle.
Subsurface Outflow - (Measured in Cubic Meter per Second) - Subsurface Outflow is the flow of water beneath earth's surface as part of the water cycle.
Actual Evapotranspiration - (Measured in Cubic Meter per Second) - Actual Evapotranspiration is the quantity of water that is actually removed from a surface due to the processes of evaporation and transpiration.
STEP 1: Convert Input(s) to Base Unit
Change in Moisture Storage: 0.02 Meter --> 0.02 Meter No Conversion Required
Surface Runoff: 0.05 Cubic Meter per Second --> 0.05 Cubic Meter per Second No Conversion Required
Subsurface Outflow: 0.07 Cubic Meter per Second --> 0.07 Cubic Meter per Second No Conversion Required
Actual Evapotranspiration: 0.16 Cubic Meter per Second --> 0.16 Cubic Meter per Second No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
P = ΔS+Sr+Go+Eact --> 0.02+0.05+0.07+0.16
Evaluating ... ...
P = 0.3
STEP 3: Convert Result to Output's Unit
0.3 Meter --> No Conversion Required
FINAL ANSWER
0.3 Meter <-- Precipitation
(Calculation completed in 00.004 seconds)

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7 Evapotranspiration Calculators

Runoff given Change in Moisture Storage
Go Surface Runoff = -(Change in Moisture Storage-Precipitation+Subsurface Outflow+Actual Evapotranspiration)
Subsurface Outflow given Change in Moisture Storage
Go Subsurface Outflow = Precipitation-Change in Moisture Storage-Surface Runoff-Actual Evapotranspiration
Precipitation given Change in Moisture Storage
Go Precipitation = Change in Moisture Storage+Surface Runoff+Subsurface Outflow+Actual Evapotranspiration
Change in Moisture Storage
Go Change in Moisture Storage = Precipitation-Surface Runoff-Subsurface Outflow-Actual Evapotranspiration
Actual Evapotranspiration
Go Actual Evapotranspiration = Precipitation-Change in Moisture Storage-Surface Runoff-Subsurface Outflow
Aridity Index
Go Aridity Index = ((Daily Potential Evapotranspiration-Actual Evapotranspiration)/Daily Potential Evapotranspiration)*100
Actual Evapotranspiration given Aridity Index
Go Actual Evapotranspiration = Daily Potential Evapotranspiration-(Aridity Index*Daily Potential Evapotranspiration/100)

Precipitation given Change in Moisture Storage Formula

Precipitation = Change in Moisture Storage+Surface Runoff+Subsurface Outflow+Actual Evapotranspiration
P = ΔS+Sr+Go+Eact

What is Precipitation?

Precipitation is a form of water from the atmosphere. It is a term in meteorology, and includes rain, snow, sleet, ice pellets dew, frost, and hail. These form by condensation from atmospheric water vapor, and fall under gravity. Fog and mist are not precipitation but suspensions.

How to Calculate Precipitation given Change in Moisture Storage?

Precipitation given Change in Moisture Storage calculator uses Precipitation = Change in Moisture Storage+Surface Runoff+Subsurface Outflow+Actual Evapotranspiration to calculate the Precipitation, The Precipitation given Change in Moisture Storage is is a form of water from the atmosphere in the form of rain, snow, sleet, ice pellets dew, frost, and hail. Precipitation is denoted by P symbol.

How to calculate Precipitation given Change in Moisture Storage using this online calculator? To use this online calculator for Precipitation given Change in Moisture Storage, enter Change in Moisture Storage (ΔS), Surface Runoff (Sr), Subsurface Outflow (Go) & Actual Evapotranspiration (Eact) and hit the calculate button. Here is how the Precipitation given Change in Moisture Storage calculation can be explained with given input values -> 0.3 = 0.02+0.05+0.07+0.16.

FAQ

What is Precipitation given Change in Moisture Storage?
The Precipitation given Change in Moisture Storage is is a form of water from the atmosphere in the form of rain, snow, sleet, ice pellets dew, frost, and hail and is represented as P = ΔS+Sr+Go+Eact or Precipitation = Change in Moisture Storage+Surface Runoff+Subsurface Outflow+Actual Evapotranspiration. Change in Moisture Storage is the total amount of water that is stored within the specified reservoir or catchment area, Surface Runoff water, from rain, snowmelt, or other sources, that flows over the land surface, and is a major component of the water cycle, Subsurface Outflow is the flow of water beneath earth's surface as part of the water cycle & Actual Evapotranspiration is the quantity of water that is actually removed from a surface due to the processes of evaporation and transpiration.
How to calculate Precipitation given Change in Moisture Storage?
The Precipitation given Change in Moisture Storage is is a form of water from the atmosphere in the form of rain, snow, sleet, ice pellets dew, frost, and hail is calculated using Precipitation = Change in Moisture Storage+Surface Runoff+Subsurface Outflow+Actual Evapotranspiration. To calculate Precipitation given Change in Moisture Storage, you need Change in Moisture Storage (ΔS), Surface Runoff (Sr), Subsurface Outflow (Go) & Actual Evapotranspiration (Eact). With our tool, you need to enter the respective value for Change in Moisture Storage, Surface Runoff, Subsurface Outflow & Actual Evapotranspiration 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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