Faraday's second law of electrolysis states that if the same amount of electricity is passed through different electrolytes, the masses of ions deposited at the electrodes are directly proportional to their chemical equivalents.
The second law of Faraday, also known as Faraday's Law of Electrolysis, states that the amount of chemical change (deposition or liberation of a substance) that occurs during electrolysis is directly proportional to the quantity of electricity passed through the electrolyte. In simpler terms, it means that the amount of material produced or consumed during electrolysis is directly related to the amount of electric charge that passes through the electrolyte. It's an important concept in understanding the relationship between electricity and chemical reactions. ⚡️
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Faraday's second law of electrolysis states that if the same amount of electricity is passed through different electrolytes, the masses of ions deposited at the electrodes are directly proportional to their chemical equivalents.
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The second law of Faraday, also known as Faraday's Law of Electrolysis, states that the amount of chemical change (deposition or liberation of a substance) that occurs during electrolysis is directly proportional to the quantity of electricity passed through the electrolyte. In simpler terms, it means that the amount of material produced or consumed during electrolysis is directly related to the amount of electric charge that passes through the electrolyte. It's an important concept in understanding the relationship between electricity and chemical reactions. ⚡️
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