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Faraday Electrolysis Mass Calculator — result sheet
Estimate deposited mass from current, time, molar mass, electron count, and Faraday’s constant.
Inputs used
Results
Visual chart
Breakdown
Calculation steps
Returned data table
Formula and methodology
Formula: Mass grams=I×t×molar mass/(n×F), with F=96,485.33212 C/mol.
The ideal Faraday-law calculation keeps charge, stoichiometry, and molar mass separate from real-cell efficiency.
This result follows the calculator's declared inputs, precision, validation boundaries, and model limits.
Input contract
- Current — minimum 0; maximum 1000000
- Time — minimum 0; maximum 1000000000
- Molar mass — minimum 1.0E-6; maximum 1000000
- Electrons per ion — minimum 1.0E-6; maximum 100
Worked example
| Input | Value |
|---|---|
| Current | 2 |
| Time | 3600 |
| Molar mass | 63.546 |
| Electrons per ion | 2 |
Ideal deposited mass ≈2.37 g.
Assumptions and limits
- Current and time produce coulombs, molar mass is in grams per mole, and n is positive.
- Current efficiency is treated as 100 percent.
- Side reactions, electrode area, solution chemistry, heat, and cell losses are not modeled.
Calculator note
Source and methodology
Use the official WorldCalculate methodology policy for the source, formula, precision, and boundary standards behind this calculator.
Planning estimate, not financial, medical, legal, or professional advice. © WorldCalculate — reuse with attribution. Built and curated by Hassan ALRowaie.
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