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Two nucleons are at a separation of 1×10−15 m. The net force between them is F1 if both are neutrons, F2 if both are protons and F3 if one is a proton and other is a neutron. In such a case A .F2>F1>F3 B .F1>F2>F3 C .F1>F3>F2 D .F3=F1>F2? for Class 12 2024 is part of Class 12 preparation. The Question and answers have been prepared
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Two nucleons are at a separation of 1×10−15 m. The net force between them is F1 if both are neutrons, F2 if both are protons and F3 if one is a proton and other is a neutron. In such a case A .F2>F1>F3 B .F1>F2>F3 C .F1>F3>F2 D .F3=F1>F2?, a detailed solution for Two nucleons are at a separation of 1×10−15 m. The net force between them is F1 if both are neutrons, F2 if both are protons and F3 if one is a proton and other is a neutron. In such a case A .F2>F1>F3 B .F1>F2>F3 C .F1>F3>F2 D .F3=F1>F2? has been provided alongside types of Two nucleons are at a separation of 1×10−15 m. The net force between them is F1 if both are neutrons, F2 if both are protons and F3 if one is a proton and other is a neutron. In such a case A .F2>F1>F3 B .F1>F2>F3 C .F1>F3>F2 D .F3=F1>F2? theory, EduRev gives you an
ample number of questions to practice Two nucleons are at a separation of 1×10−15 m. The net force between them is F1 if both are neutrons, F2 if both are protons and F3 if one is a proton and other is a neutron. In such a case A .F2>F1>F3 B .F1>F2>F3 C .F1>F3>F2 D .F3=F1>F2? tests, examples and also practice Class 12 tests.