Cell Constant given Resistance and Resistivity Solution

STEP 0: Pre-Calculation Summary
Formula Used
Cell Constant = (Resistance/Resistivity)
b = (R/ρ)
This formula uses 3 Variables
Variables Used
Cell Constant - (Measured in Diopter) - The Cell Constant in the electrolytic conductor is the ratio of the distance between the electrode to the area of cross-section of the electrode.
Resistance - (Measured in Ohm) - Resistance is a measure of the opposition to current flow in an electrical circuit. Its S.I unit is ohm.
Resistivity - (Measured in Ohm Meter) - Resistivity is the measure of how strongly a material opposes the flow of current through them.
STEP 1: Convert Input(s) to Base Unit
Resistance: 0.000101 Ohm --> 0.000101 Ohm No Conversion Required
Resistivity: 1.7E-05 Ohm Meter --> 1.7E-05 Ohm Meter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
b = (R/ρ) --> (0.000101/1.7E-05)
Evaluating ... ...
b = 5.94117647058824
STEP 3: Convert Result to Output's Unit
5.94117647058824 Diopter -->5.94117647058824 1 per Meter (Check conversion here)
FINAL ANSWER
5.94117647058824 5.941176 1 per Meter <-- Cell Constant
(Calculation completed in 00.009 seconds)

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K J Somaiya College of science (K J Somaiya), Mumbai
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9 Resistance and Resistivity Calculators

Resistance given Distance between Electrode and Area of Cross-Section of Electrode
Go Resistance = (Resistivity)*(Distance between Electrodes/Electrode Cross-sectional Area)
Electrode Cross-Section Area given Resistance and Resistivity
Go Electrode Cross-sectional Area = (Resistivity*Distance between Electrodes)/Resistance
Distance between Electrode given Resistance and Resistivity
Go Distance between Electrodes = (Resistance*Electrode Cross-sectional Area)/Resistivity
Resistivity
Go Resistivity = Resistance*Electrode Cross-sectional Area/Distance between Electrodes
Cell Constant given Resistance and Resistivity
Go Cell Constant = (Resistance/Resistivity)
Resistivity given Cell Constant
Go Resistivity = (Resistance/Cell Constant)
Resistance given Cell Constant
Go Resistance = (Resistivity*Cell Constant)
Resistivity given Specific Conductance
Go Resistivity = 1/Specific Conductance
Resistance given Conductance
Go Resistance = 1/Conductance

15 Important Formulas of Current Efficiency and Resistance Calculators

Mass of Metal to be Deposited
Go Mass to be Deposited = (Molecular Weight*Electric Current*Time)/(N Factor*[Faraday])
Kohlrausch Law
Go Molar Conductivity = Limiting Molar Conductivity-(Kohlrausch Coefficient*sqrt(Concentration of Electrolyte))
Resistance given Distance between Electrode and Area of Cross-Section of Electrode
Go Resistance = (Resistivity)*(Distance between Electrodes/Electrode Cross-sectional Area)
Electrode Cross-Section Area given Resistance and Resistivity
Go Electrode Cross-sectional Area = (Resistivity*Distance between Electrodes)/Resistance
Distance between Electrode given Resistance and Resistivity
Go Distance between Electrodes = (Resistance*Electrode Cross-sectional Area)/Resistivity
Resistivity
Go Resistivity = Resistance*Electrode Cross-sectional Area/Distance between Electrodes
Current Efficiency
Go Current Efficiency = (Actual Mass Deposited/Theoretical Mass Deposited)*100
Solubility
Go Solubility = Specific Conductance*1000/Limiting Molar Conductivity
Excess Pressure given Osmotic Coefficient
Go Excess Osmotic Pressure = (Osmotic Coefficient-1)*Ideal Pressure
Ideal Pressure given Osmotic Coefficient
Go Ideal Pressure = Excess Osmotic Pressure/(Osmotic Coefficient-1)
Cell Constant given Resistance and Resistivity
Go Cell Constant = (Resistance/Resistivity)
Resistance given Cell Constant
Go Resistance = (Resistivity*Cell Constant)
Solubility Product
Go Solubility Product = Molar Solubility^2
Resistivity given Specific Conductance
Go Resistivity = 1/Specific Conductance
Resistance given Conductance
Go Resistance = 1/Conductance

Cell Constant given Resistance and Resistivity Formula

Cell Constant = (Resistance/Resistivity)
b = (R/ρ)

What is Resistivity?

Resistivity, the electrical resistance of a conductor of unit cross-sectional area and unit length. A characteristic property of each material, resistivity is useful in comparing various materials on the basis of their ability to conduct electric currents. High resistivity designates poor conductors.

How to Calculate Cell Constant given Resistance and Resistivity?

Cell Constant given Resistance and Resistivity calculator uses Cell Constant = (Resistance/Resistivity) to calculate the Cell Constant, The Cell constant given resistance and resistivity formula is defined as the ratio of resistance to the resistivity of the electrolytic cell. Cell Constant is denoted by b symbol.

How to calculate Cell Constant given Resistance and Resistivity using this online calculator? To use this online calculator for Cell Constant given Resistance and Resistivity, enter Resistance (R) & Resistivity (ρ) and hit the calculate button. Here is how the Cell Constant given Resistance and Resistivity calculation can be explained with given input values -> 5.941176 = (0.000101/1.7E-05).

FAQ

What is Cell Constant given Resistance and Resistivity?
The Cell constant given resistance and resistivity formula is defined as the ratio of resistance to the resistivity of the electrolytic cell and is represented as b = (R/ρ) or Cell Constant = (Resistance/Resistivity). Resistance is a measure of the opposition to current flow in an electrical circuit. Its S.I unit is ohm & Resistivity is the measure of how strongly a material opposes the flow of current through them.
How to calculate Cell Constant given Resistance and Resistivity?
The Cell constant given resistance and resistivity formula is defined as the ratio of resistance to the resistivity of the electrolytic cell is calculated using Cell Constant = (Resistance/Resistivity). To calculate Cell Constant given Resistance and Resistivity, you need Resistance (R) & Resistivity (ρ). With our tool, you need to enter the respective value for Resistance & Resistivity 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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