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The nucleus splits to form two or more smaller nuclei.
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the energy released during nuclear fission or fusion, esp. when used to gnerate electricity.
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During the detonation of a nuclear bomb an enormous amount of energy is released as fission due to the splitting (fissioning) of atoms of uranium or plutonium. In the case of a simple nuclear weapon (such as those dropped on Japan during World War 2) this is where the explosion stops. In the case of a hydrogen bomb, also referred to as a thermonuclear weapon, the energy released by the fission is used to trigger the fusion of atoms of hydrogen, releasing energy in the same way that the sun produces energy.
Energy is released during fusion and fission.
Yes. Uranium contains potential energy, and the energy is released during fission.
Neutrons released during a fission reaction trigger other fission reactions.
Yes
Energy is released when the the mass of the nucleus of an atom is reduced by the release of neutrons and gamma photons during the process of nuclear fission.
Fission is the splitting of heavy nuclei, mostly Uranium235 but also Plutonium 239, which is made to happen in nuclear fission reactors, and releases energy. Transmutation of elements occurs in this process as when the heavy nucleus splits, two lighter nuclei of other elements such as caesium, strontium, iodine, are formed, these are the fission products. Fusion is the joining together of two nuclei, the ones being experimented with being deuterium and tritium, both isotopes of hydrogen. These transmute to helium during fusion.
The nucleus splits to form two or more smaller nuclei.
During precipitation, a water particle is released from the clouds. This particle can be in the form of a water droplet of rain, sleet, snow, freezing rain or even hail.
Atomic energy is released during a nuclear reaction during fission or fusion. It is released by the nucleus of an atom and can also be a result of radioactive decay.
Alpha particles and neutrons fron spontaneous fission
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