Equivalent Conductance given Normality Solution

STEP 0: Pre-Calculation Summary
Formula Used
Equivalent conductance of ions = Specific Conductance*(1000/Normality)
Λeq = K*(1000/N)
This formula uses 3 Variables
Variables Used
Equivalent conductance of ions - (Measured in Siemens Square Meter Per Equivalent) - The equivalent conductance of ions is defined as the conducting power of all the ions produced by one gram of an electrolyte in the given solution.
Specific Conductance - (Measured in Siemens per Meter) - The Specific Conductance is the ability of a substance to conduct electricity. It is the reciprocal of specific resistance.
Normality - (Measured in Mole per Cubic Meter) - Normality is the weight of solute dissolved in a liter of solution.
STEP 1: Convert Input(s) to Base Unit
Specific Conductance: 4 Siemens per Meter --> 4 Siemens per Meter No Conversion Required
Normality: 15 Equivalents per Liter --> 15000 Mole per Cubic Meter (Check conversion ​here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Λeq = K*(1000/N) --> 4*(1000/15000)
Evaluating ... ...
Λeq = 0.266666666666667
STEP 3: Convert Result to Output's Unit
0.266666666666667 Siemens Square Meter Per Equivalent -->2666.66666666667 Siemens Square Centimeter Per Equivalent (Check conversion ​here)
FINAL ANSWER
2666.66666666667 2666.667 Siemens Square Centimeter Per Equivalent <-- Equivalent conductance of ions
(Calculation completed in 00.020 seconds)

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Normality of Solution Calculators

Specific Conductivity given Equivalent Conductivity and Normality of solution
​ LaTeX ​ Go Specific Conductance = (Equivalent conductance of ions*Normality)/1000
Normality given Equivalent Conductance
​ LaTeX ​ Go Normality = Specific Conductance*(1000/Equivalent conductance of ions)
Equivalent Conductance given Normality
​ LaTeX ​ Go Equivalent conductance of ions = Specific Conductance*(1000/Normality)

Equivalent Conductance given Normality Formula

​LaTeX ​Go
Equivalent conductance of ions = Specific Conductance*(1000/Normality)
Λeq = K*(1000/N)

What is equivalent conductance?

Equivalent conductance is defined as the conductance of an electrolyte solution containing one gram equivalent of the electrolyte. It is equal to the product of specific conductance (k) of the solution and the volume (V) of the solution that contains one gram equivalent of the electrolyte.

How to Calculate Equivalent Conductance given Normality?

Equivalent Conductance given Normality calculator uses Equivalent conductance of ions = Specific Conductance*(1000/Normality) to calculate the Equivalent conductance of ions, The Equivalent conductance given normality formula is defined as the relation of equivalent conductance with specific conductance and normality of the solution. Equivalent conductance of ions is denoted by Λeq symbol.

How to calculate Equivalent Conductance given Normality using this online calculator? To use this online calculator for Equivalent Conductance given Normality, enter Specific Conductance (K) & Normality (N) and hit the calculate button. Here is how the Equivalent Conductance given Normality calculation can be explained with given input values -> 2.7E+7 = 4*(1000/15000).

FAQ

What is Equivalent Conductance given Normality?
The Equivalent conductance given normality formula is defined as the relation of equivalent conductance with specific conductance and normality of the solution and is represented as Λeq = K*(1000/N) or Equivalent conductance of ions = Specific Conductance*(1000/Normality). The Specific Conductance is the ability of a substance to conduct electricity. It is the reciprocal of specific resistance & Normality is the weight of solute dissolved in a liter of solution.
How to calculate Equivalent Conductance given Normality?
The Equivalent conductance given normality formula is defined as the relation of equivalent conductance with specific conductance and normality of the solution is calculated using Equivalent conductance of ions = Specific Conductance*(1000/Normality). To calculate Equivalent Conductance given Normality, you need Specific Conductance (K) & Normality (N). With our tool, you need to enter the respective value for Specific Conductance & Normality 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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