Q.How much charge is required for the following reductions:
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Start your 14-day free trial to unlock the full solution →The charge required is found using Faraday’s laws: charge = (number of moles of electrons) × (Faraday constant, 96485 C/mol). For each reduction, we first determine the moles of electrons needed per mole of substance, then multiply by F. The answers are:
- 289455 C.
- 192970 C.
- 482425 C.
Faraday’s laws of electrolysis tell us that the amount of chemical change is directly proportional to the quantity of electricity passed. The key idea is simple: each mole of electrons carries a fixed charge, called the Faraday constant (). So to find the charge needed for a reduction, we just need to know how many moles of electrons are consumed per mole of the substance being reduced.
The number of moles of electrons comes from the change in oxidation state. For a reduction, the metal ion or oxyanion gains electrons — the difference in oxidation number tells you exactly how many electrons each formula unit takes up. Multiply that by the number of moles of the substance, and you have the total moles of electrons. Then multiply by to get the charge in coulombs.
Let’s work through each case.
- Reduction of to The half-reaction is:
Each ion gains 3 electrons. So for 1 mole of , we need 3 moles of electrons.
Charge required = .
- Reduction of to Half-reaction:
Each gains 2 electrons. For 1 mole of , we need 2 moles of electrons.
Charge = .
- Reduction of to This is a bit trickier because the oxidation state of Mn changes. In , Mn is in +7 state (since O is -2, total charge -1: ). In , it’s +2. So each Mn atom gains 5 electrons. The balanced half-reaction in acidic medium is: …
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