Question A9 On absorption of a single neutron, plutonium Pu-239 can undergo fission into xenon Xe-134 plus zirconium Zr-103 plus three neutrons. The masses of these nuclei are, mpu-239 = mxe-134 = 133.905 amu, and mzr-103 = 102.927 amu. Calculate the energy given off in this nuclear reaction. 239.052 amu,
Question A9 On absorption of a single neutron, plutonium Pu-239 can undergo fission into xenon Xe-134 plus zirconium Zr-103 plus three neutrons. The masses of these nuclei are, mpu-239 = mxe-134 = 133.905 amu, and mzr-103 = 102.927 amu. Calculate the energy given off in this nuclear reaction. 239.052 amu,
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
Transcribed Image Text:Question A9
On absorption of a single neutron, plutonium Pu-239 can undergo fission into xenon Xe-134 plus
zirconium Zr-103 plus three neutrons. The masses of these nuclei are, mpu-239 =
239.052 amu,
mxe-134 =
133.905 amu,
and
mzr-103
102.927 amu. Calculate the energy given off in this nuclear
reaction.
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