Constant Depending upon Soil at Base of Well with Base 10 Solution

STEP 0: Pre-Calculation Summary
Formula Used
Constant = ((Cross-Sectional Area*2.303)/Time)*log((Depression Head 1/Depression Head 2),10)
K = ((Acs*2.303)/t)*log((h1/h2),10)
This formula uses 1 Functions, 5 Variables
Functions Used
log - Logarithmic function is an inverse function to exponentiation., log(Base, Number)
Variables Used
Constant - Constant depending on the soil at the base of the well.
Cross-Sectional Area - (Measured in Square Meter) - Cross-Sectional Area is the area of a two-dimensional shape that is obtained when a three-dimensional shape is sliced perpendicular to some specified axis at a point.
Time - (Measured in Hour) - Time can be defined as the ongoing and continuous sequence of events that occur in succession, from the past through the present to the future.
Depression Head 1 - (Measured in Meter) - Depression Head 1 is the difference of level of waters table and the water level in the well when pumping stopped.
Depression Head 2 - (Measured in Meter) - Depression Head 2 is the difference of level of waters table and the water level in the well when pumping stopped.
STEP 1: Convert Input(s) to Base Unit
Cross-Sectional Area: 13 Square Meter --> 13 Square Meter No Conversion Required
Time: 4 Hour --> 4 Hour No Conversion Required
Depression Head 1: 27 Meter --> 27 Meter No Conversion Required
Depression Head 2: 10 Meter --> 10 Meter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
K = ((Acs*2.303)/t)*log((h1/h2),10) --> ((13*2.303)/4)*log((27/10),10)
Evaluating ... ...
K = 17.3513647225161
STEP 3: Convert Result to Output's Unit
17.3513647225161 --> No Conversion Required
FINAL ANSWER
17.3513647225161 17.35136 <-- Constant
(Calculation completed in 00.019 seconds)

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8 Constant Depending upon Base Soil Calculators

Constant Depression Head given Discharge and Time in Hours
Go Constant Depression Head = Discharge/((2.303*Cross-Sectional Area*log((Depression Head 1/Depression Head 2),10))/Time)
Constant Depending upon Soil at Base of Well
Go Constant = (Cross-Sectional Area/Time)*log((Depression Head 1/Depression Head 2),e)
Constant Depending upon Soil at Base of Well with Base 10
Go Constant = ((Cross-Sectional Area*2.303)/Time)*log((Depression Head 1/Depression Head 2),10)
Constant Depending upon Soil at Base of Well given Specific Capacity
Go Constant = Cross-Sectional Area*Specific Capacity
Constant Depending upon Soil at Base of Well given Discharge from Well
Go Constant = Discharge/Constant Depression Head
Constant Depression Head given Discharge from Well
Go Constant Depression Head = Discharge/Constant
Constant Depending upon Soil at Base of Well given Clay Soil
Go Constant = 0.25*Cross-Sectional Area
Constant Depending upon Soil at Base of Well given Fine Sand
Go Constant = 0.5*Cross-Sectional Area

Constant Depending upon Soil at Base of Well with Base 10 Formula

Constant = ((Cross-Sectional Area*2.303)/Time)*log((Depression Head 1/Depression Head 2),10)
K = ((Acs*2.303)/t)*log((h1/h2),10)

What is specific capacity ?

Specific capacity is a quantity that which a water well can produce per unit of drawdown. It is normally obtained from a step drawdown test.

How to Calculate Constant Depending upon Soil at Base of Well with Base 10?

Constant Depending upon Soil at Base of Well with Base 10 calculator uses Constant = ((Cross-Sectional Area*2.303)/Time)*log((Depression Head 1/Depression Head 2),10) to calculate the Constant, The Constant Depending upon Soil at Base of Well with Base 10 calculates the value of constant depending upon soil at base of well when we have prior information of other parameters used. Constant is denoted by K symbol.

How to calculate Constant Depending upon Soil at Base of Well with Base 10 using this online calculator? To use this online calculator for Constant Depending upon Soil at Base of Well with Base 10, enter Cross-Sectional Area (Acs), Time (t), Depression Head 1 (h1) & Depression Head 2 (h2) and hit the calculate button. Here is how the Constant Depending upon Soil at Base of Well with Base 10 calculation can be explained with given input values -> 17.35136 = ((13*2.303)/14400)*log((27/10),10).

FAQ

What is Constant Depending upon Soil at Base of Well with Base 10?
The Constant Depending upon Soil at Base of Well with Base 10 calculates the value of constant depending upon soil at base of well when we have prior information of other parameters used and is represented as K = ((Acs*2.303)/t)*log((h1/h2),10) or Constant = ((Cross-Sectional Area*2.303)/Time)*log((Depression Head 1/Depression Head 2),10). Cross-Sectional Area is the area of a two-dimensional shape that is obtained when a three-dimensional shape is sliced perpendicular to some specified axis at a point, Time can be defined as the ongoing and continuous sequence of events that occur in succession, from the past through the present to the future, Depression Head 1 is the difference of level of waters table and the water level in the well when pumping stopped & Depression Head 2 is the difference of level of waters table and the water level in the well when pumping stopped.
How to calculate Constant Depending upon Soil at Base of Well with Base 10?
The Constant Depending upon Soil at Base of Well with Base 10 calculates the value of constant depending upon soil at base of well when we have prior information of other parameters used is calculated using Constant = ((Cross-Sectional Area*2.303)/Time)*log((Depression Head 1/Depression Head 2),10). To calculate Constant Depending upon Soil at Base of Well with Base 10, you need Cross-Sectional Area (Acs), Time (t), Depression Head 1 (h1) & Depression Head 2 (h2). With our tool, you need to enter the respective value for Cross-Sectional Area, Time, Depression Head 1 & Depression Head 2 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 Constant?
In this formula, Constant uses Cross-Sectional Area, Time, Depression Head 1 & Depression Head 2. We can use 5 other way(s) to calculate the same, which is/are as follows -
  • Constant = Cross-Sectional Area*Specific Capacity
  • Constant = (Cross-Sectional Area/Time)*log((Depression Head 1/Depression Head 2),e)
  • Constant = 0.25*Cross-Sectional Area
  • Constant = 0.5*Cross-Sectional Area
  • Constant = Discharge/Constant Depression Head
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