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Q.Which of the following cell converts the energy of combustion of fuel into electrical energy ? (A) Mercury cell (B) Fuel cell (C) Dry cell (D) Lead storage cell

CBSECBSE Class XII Board 2025MCQ· 1mImportance★★★★★
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A fuel cell directly converts the chemical energy from the combustion of a fuel (like hydrogen) into electrical energy, without burning the fuel in a flame. The correct answer is (B).

The key idea here is the direct conversion of chemical energy to electrical energy. In a fuel cell, the fuel (e.g., hydrogen) and an oxidant (e.g., oxygen) are supplied continuously. The reaction that happens inside the cell is essentially the same as combustion — hydrogen combining with oxygen to form water — but it occurs electrochemically, not as a flame. This means electrons are forced to travel through an external circuit, producing electricity.

Let’s look at each option to see why only one fits.

  1. Fuel cell (Option B) — This is the only cell that continuously consumes a fuel and an oxidant from outside. The “combustion of fuel” happens at the electrodes: at the anode, fuel is oxidised (loses electrons), and at the cathode, oxygen is reduced (gains electrons). The overall reaction is the same as burning the fuel, but the energy is released as electrical work, not heat. This is exactly what the question describes.

  2. Mercury cell (Option A) — This is a primary (non-rechargeable) battery. It uses a zinc anode and a mercuric oxide cathode. The reaction is not a combustion; it’s a redox reaction between solid chemicals inside the sealed cell. No fuel is burned, and no external fuel is supplied.

  3. Dry cell (Option C) — The common Leclanché cell (zinc-carbon) or alkaline cell. Again, it’s a sealed primary battery. The reactants are inside the cell (zinc, manganese dioxide, etc.). There is no combustion of a fuel — the reaction is a one-time conversion of stored chemicals. …

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