Energy stored in the nucleus of an atom is

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Multiple Choice

Energy stored in the nucleus of an atom is

Explanation:
Energy stored in the nucleus is nuclear energy. This comes from the binding energy that holds protons and neutrons together in the nucleus due to the strong nuclear force. Because of mass defect, the nucleus has a bit less mass than the sum of its individual nucleons, and that missing mass is converted into the energy that binds the nucleus. This energy can be released in nuclear reactions such as fission or fusion. Salt is simply a compound with chemical energy, not energy stored in the nucleus, and thermal energy is the energy related to the motion of particles at a given temperature. Fusion is a process that releases energy by combining nuclei, not the form of energy stored inside a nucleus itself.

Energy stored in the nucleus is nuclear energy. This comes from the binding energy that holds protons and neutrons together in the nucleus due to the strong nuclear force. Because of mass defect, the nucleus has a bit less mass than the sum of its individual nucleons, and that missing mass is converted into the energy that binds the nucleus. This energy can be released in nuclear reactions such as fission or fusion. Salt is simply a compound with chemical energy, not energy stored in the nucleus, and thermal energy is the energy related to the motion of particles at a given temperature. Fusion is a process that releases energy by combining nuclei, not the form of energy stored inside a nucleus itself.

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