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The binding energy of these three isotopes is so low that when a neutron is captured, the energy released by rearrangement exceeds it. The nucleus is then no longer stable and must either shed the excess energy, or split into two pieces. Since fission occurs regardless of the neutron's kinetic energy (i.e. no extra energy from its motion is needed to disrupt the nucleus), this is called "slow fission".
By contrast, when the abundant isotope uranium-238 captures a neutron it still has a binding energy deficit of 1 MeV after internal rearrangement. If it captures a neutron with a kinetic energy exceeding 1 MeV, then this energy plus the energy released by rearrangement can over come the binding energy and cause fission...
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Common topics in this essay:
- Atomic Bomb
- atomic bomb
- Atomic Bomb
- Nuclear Weapon's Future
- The Atomic Bomb
- The Atomic Bomb
- The Atomic Bomb
- The Atomic Bomb
- The Rise Of The Nuclear Weapon Into A Political Weapon
- Disintegration of Uranium by Neutrons: a New Type of Nuclear Reaction
- Disintegration of Uranium by Neutrons: a New Type of Nuclear Reaction
- Nuclear Energy: Uranium Fission
- nuclear weapon
- Uranium/ special nuclear material
- Nuclear Weapon's Future
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