Theoretical Mass given Current Efficiency and Actual Mass Solution

STEP 0: Pre-Calculation Summary
Formula Used
Theoretical Mass Deposited = ((Actual Mass Deposited/Current Efficiency)*100)
mt = ((A/C.E)*100)
This formula uses 3 Variables
Variables Used
Theoretical Mass Deposited - (Measured in Kilogram) - The Theoretical Mass Deposited is the theoretical mass liberated according to faraday's law.
Actual Mass Deposited - (Measured in Kilogram) - The Actual Mass Deposited is the actual mass of a substance liberated from an electrolyte by the passage of current.
Current Efficiency - The Current Efficiency is the ratio of the actual mass of a substance liberated from an electrolyte by the passage of current to the theoretical mass liberated according to Faraday's law.
STEP 1: Convert Input(s) to Base Unit
Actual Mass Deposited: 45 Gram --> 0.045 Kilogram (Check conversion ​here)
Current Efficiency: 54 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
mt = ((A/C.E)*100) --> ((0.045/54)*100)
Evaluating ... ...
mt = 0.0833333333333333
STEP 3: Convert Result to Output's Unit
0.0833333333333333 Kilogram -->83.3333333333333 Gram (Check conversion ​here)
FINAL ANSWER
83.3333333333333 83.33333 Gram <-- Theoretical Mass Deposited
(Calculation completed in 00.004 seconds)

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Theoretical Mass given Current Efficiency and Actual Mass Formula

​LaTeX ​Go
Theoretical Mass Deposited = ((Actual Mass Deposited/Current Efficiency)*100)
mt = ((A/C.E)*100)

What is Current Efficiency?

Current efficiency is the ratio of the actual mass of a substance liberated from an electrolyte by the passage of current to the theoretical mass liberated according to Faraday's law. Current efficiency can be used in measuring electrodeposition thickness on materials in electrolysis.

How to Calculate Theoretical Mass given Current Efficiency and Actual Mass?

Theoretical Mass given Current Efficiency and Actual Mass calculator uses Theoretical Mass Deposited = ((Actual Mass Deposited/Current Efficiency)*100) to calculate the Theoretical Mass Deposited, The Theoretical Mass given Current Efficiency and Actual Mass formula is defined as the ratio of the actual mass deposited on the electrode to the current efficiency. Theoretical Mass Deposited is denoted by mt symbol.

How to calculate Theoretical Mass given Current Efficiency and Actual Mass using this online calculator? To use this online calculator for Theoretical Mass given Current Efficiency and Actual Mass, enter Actual Mass Deposited (A) & Current Efficiency (C.E) and hit the calculate button. Here is how the Theoretical Mass given Current Efficiency and Actual Mass calculation can be explained with given input values -> 83333.33 = ((0.045/54)*100).

FAQ

What is Theoretical Mass given Current Efficiency and Actual Mass?
The Theoretical Mass given Current Efficiency and Actual Mass formula is defined as the ratio of the actual mass deposited on the electrode to the current efficiency and is represented as mt = ((A/C.E)*100) or Theoretical Mass Deposited = ((Actual Mass Deposited/Current Efficiency)*100). The Actual Mass Deposited is the actual mass of a substance liberated from an electrolyte by the passage of current & The Current Efficiency is the ratio of the actual mass of a substance liberated from an electrolyte by the passage of current to the theoretical mass liberated according to Faraday's law.
How to calculate Theoretical Mass given Current Efficiency and Actual Mass?
The Theoretical Mass given Current Efficiency and Actual Mass formula is defined as the ratio of the actual mass deposited on the electrode to the current efficiency is calculated using Theoretical Mass Deposited = ((Actual Mass Deposited/Current Efficiency)*100). To calculate Theoretical Mass given Current Efficiency and Actual Mass, you need Actual Mass Deposited (A) & Current Efficiency (C.E). With our tool, you need to enter the respective value for Actual Mass Deposited & Current Efficiency 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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