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Q.For questions 13 to 16, two statements are given – one labelled Assertion (A) and the other labelled Reason (R). Select the correct answer from the codes (A), (B), (C) and (D) below: (A) Both Assertion (A) and Reason (R) are true and Reason (R) is the correct explanation of the Assertion (A). (B) Both Assertion (A) and Reason (R) are true, but Reason (R) is not the correct explanation of the Assertion (A). (C) Assertion (A) is true, but Reason (R) is false. (D) Both Assertion (A) and Reason (R) are false. Assertion (A) : The mass of a nucleus is less than the sum of the masses of the constituent nucleons. Reason (R) : Energy is absorbed when the nucleons are bound together to form a nucleus.

CBSECBSE Class XII Board 2026MCQ· 1mImportance★★★★★
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The key idea is mass defect: the mass of a stable nucleus is always less than the sum of its individual nucleon masses because the binding energy released during formation reduces the total mass. The Assertion is true, but the Reason is false — energy is released, not absorbed, when nucleons bind.

This question tests your understanding of mass defect and binding energy — two of the most beautiful consequences of Einstein’s mass-energy equivalence, E=mc2E = mc^2.

When nucleons (protons and neutrons) come together to form a nucleus, they attract each other via the strong nuclear force. To pull them apart into isolated nucleons, you must supply energy — that energy is called the binding energy. Conversely, when they bind, that same amount of energy is released into the surroundings (usually as gamma rays).

Here’s the crucial link: because energy is released, the system loses mass. The mass of the bound nucleus is less than the sum of the masses of its individual nucleons. This missing mass, multiplied by c2c^2, exactly equals the binding energy. That’s the mass defect.

Now let’s examine each statement carefully.

  1. Assertion (A): “The mass of a nucleus is less than the sum of the masses of the constituent nucleons.”

    This is a well-established experimental fact for every stable nucleus. For example, a helium-4 nucleus has mass 4.0026 u4.0026\ \text{u}, but two protons and two neutrons add up to 4.0330 u4.0330\ \text{u}. The difference (0.0304 u0.0304\ \text{u}) is the mass defect. So Assertion (A) is true.

  2. Reason (R): “Energy is absorbed when the nucleons are bound together to form a nucleus.” …

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