6.a Find the energy released in the fission reactionn+ U - U*→Kr + Ba+ 3n. You can assume the initial neutron has zero kinetic Energy. Atomic mass of Kr 91.936156 b. If the excited U nucleus in problem 1 released a gamma ray to return to its ground state instead of undergoing fission, what would be the energy of the gamma ray?

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6.a Find the energy released in the fission reactionn+ 2U - 2U* Kr + 1Ba + 3n. You can assume
the initial neutron has zero kinetic Energy. Atomic mass of 22Kr = 91.936156
b. If the excited U nucleus in problem 1 released a gamma ray to return to its ground state instead of
undergoing fission, what would be the energy of the gamma ray?
Transcribed Image Text:6.a Find the energy released in the fission reactionn+ 2U - 2U* Kr + 1Ba + 3n. You can assume the initial neutron has zero kinetic Energy. Atomic mass of 22Kr = 91.936156 b. If the excited U nucleus in problem 1 released a gamma ray to return to its ground state instead of undergoing fission, what would be the energy of the gamma ray?
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