Question B1 a) The activation energy of 246 Cm is 5.9MeV. If a nucleus of 245 Cm captures a thermal neutron, is fission likely to be induced? b) Without the contribution of the paring effect what would be the likely outcome of the pro- cess? Include an energy level sketch in your explanation. c) Model the decay process 212 Po 208 Pb+ a with Gamow theory. What is the thickness of the Coulomb barrier for the a particle?
Question B1 a) The activation energy of 246 Cm is 5.9MeV. If a nucleus of 245 Cm captures a thermal neutron, is fission likely to be induced? b) Without the contribution of the paring effect what would be the likely outcome of the pro- cess? Include an energy level sketch in your explanation. c) Model the decay process 212 Po 208 Pb+ a with Gamow theory. What is the thickness of the Coulomb barrier for the a particle?
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
Transcribed Image Text:Question B1
a) The activation energy of 246 Cm is 5.9MeV. If a nucleus of 245 Cm captures a thermal neutron,
is fission likely to be induced?
b)
Without the contribution of the paring effect what would be the likely outcome of the pro-
cess? Include an energy level sketch in your explanation.
c)
Model the decay process 212 Po 208 Pb+ a with Gamow theory. What is the thickness of
the Coulomb barrier for the a particle?
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