In such a case nuclear fission occurs.
Nuclear fission
Uranium-235 can be split if it is hit by a neutron, which can induce a fission reaction. This process releases energy and more neutrons, which can then go on to split other uranium atoms in a chain reaction.
Uranium atoms are split during nuclear fission. Uranium-235 and uranium-233 are fissile with thermal neutrons and uranium-238 is fissile with fast neutrons.
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The nuclear reaction when atoms split is called fission. Fission is where atoms split into smaller particles or atoms.
Nuclear reactors split uranium atoms in a process called nuclear fission to release energy. This process generates heat that is used to produce steam, which then drives turbines to generate electricity. Burning uranium would involve a chemical reaction, while nuclear fission is a nuclear reaction.
The nuclear fission of uranium is a reaction with neutrons.
The first nuclear reaction was discovered by physicist Otto Hahn and Fritz Strassmann in 1938, during their experiments on uranium. They observed that uranium atoms were split into lighter elements when bombarded with neutrons, leading to the discovery of nuclear fission.
When uranium atoms split, it is called nuclear fission. This process releases a large amount of energy in the form of heat and radiation.
Nuclear energy is stored in the nuclei of atoms, specifically in the form of a chain reaction that occurs when atoms split (fission) or fuse together (fusion). This energy release is harnessed to generate electricity in nuclear power plants.
This phenomenon is called nuclear fission.
If a solid piece of uranium goes through a process like fission, the amount of uranium left would depend on the specific fission reactions that occur. During fission, uranium atoms split into smaller atoms, releasing energy and more neutrons which can continue the reaction. Some uranium atoms may be converted into other elements through the fission process, so the amount of remaining uranium would be less than the original piece.