Q.Discuss the process of nuclear fission and its properties.
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Start your 14-day free trial to unlock the full solution →Step 1. Discovery and definition. In 1939, Otto Hahn and Fritz Strassmann discovered that a uranium nucleus bombarded with a neutron can split into two smaller nuclei of comparable mass, releasing a large amount of energy - this is nuclear fission, always accompanied by the release of additional free neutrons.
Step 2. A representative fission reaction. . Absorbing the neutron leaves the nucleus in a short-lived excited state (lifetime s), which splits, releasing on average about 2.5 neutrons and roughly 200 MeV of energy per event - first as kinetic energy of the fragments, later transferred to surrounding matter as heat.
Step 3. Chain reaction. Since each fission releases about three fresh neutrons, and each of these can go on to trigger fission in another uranium nucleus, the number of fission events can grow rapidly (roughly geometrically) - a chain reaction. If unchecked, this is an uncontrolled chain reaction, releasing all its energy within a tiny fraction of a second (the principle of the atomic bomb); if the average number of neutrons triggering further fission is deliberately damped to exactly one per event, the result is a controlled chain reaction that proceeds steadily. …
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