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Question
which equation represents a fission reaction?
Nuclear fission is a process where a heavy nucleus splits into smaller nuclei. In the first equation, \(_{92}^{235}\text{U}\) (a heavy uranium nucleus) absorbs a neutron (\(_{0}^{1}\text{n}\)) and splits into \(_{55}^{140}\text{Cs}\) (cesium) and \(_{37}^{94}\text{Rb}\) (rubidium) along with more neutrons. This is characteristic of fission. The second equation (\(_{4}^{9}\text{Be}+_{2}^{4}\text{He}\to_{6}^{12}\text{C}+_{0}^{1}\text{n}\)) is a fusion - like process (combining lighter nuclei). The third equation (\(_{7}^{14}\text{N}+_{1}^{1}\text{H}\to_{8}^{15}\text{O}\)) is a nuclear transmutation (not fission). The fourth equation (\(_{93}^{239}\text{Np}\to_{94}^{239}\text{Pu}+_{-1}^{0}\text{n}\)) is a beta - decay (not fission).
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\(_{92}^{235}\text{U}+_{0}^{1}\text{n}\to_{55}^{140}\text{Cs}+_{37}^{94}\text{Rb}+2_{0}^{1}\text{n}\)