The 238 U nucleus has a binding energy of about 7.6 MeV per nucleon. If the...
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The 238 U nucleus has a binding energy of about 7.6 MeV per nucleon. If the nucleus were to fission into two equal fragments, each would have a kinetic energy of just over 100 MeV. From this it can be concluded that A. 238U cannot fission spontaneously B. 238U has a large neutron excess C. nuclei near A = 120 have masses greater than half that of 238 D. nuclei near A = 120 must be bound by about 6.7 MeV/nucleon E. nuclei near A = 120 must be bound by about 8.5 MeV/nucleon The 238 U nucleus has a binding energy of about 7.6 MeV per nucleon. If the nucleus were to fission into two equal fragments, each would have a kinetic energy of just over 100 MeV. From this it can be concluded that A. 238U cannot fission spontaneously B. 238U has a large neutron excess C. nuclei near A = 120 have masses greater than half that of 238 D. nuclei near A = 120 must be bound by about 6.7 MeV/nucleon E. nuclei near A = 120 must be bound by about 8.5 MeV/nucleon
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Income Tax Fundamentals 2013
ISBN: 9781285586618
31st Edition
Authors: Gerald E. Whittenburg, Martha Altus Buller, Steven L Gill
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