The mass defect for some nuclear decay of an isotope is .27805 amu. How much energy is released when 1 mole of this isotope decays? (c = 3x10$m/s) %3D A) 8.4x10' kJ B) 2.48x10° kJ C) 2.5x101° kJ D) 2.67x10° kJ

Chemistry for Engineering Students
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ISBN:9781337398909
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Chapter14: Nuclear Chemistry
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The mass defect for some nuclear decay of an isotope is .27805 amu. How much
energy is released when 1 mole of this isotope decays? (c = 3x10®m/s)
A) 8.4x10' kJ
B) 2.48x10$ kJ
C) 2.5x1010 kJ
D) 2.67x10° kJ
Transcribed Image Text:The mass defect for some nuclear decay of an isotope is .27805 amu. How much energy is released when 1 mole of this isotope decays? (c = 3x10®m/s) A) 8.4x10' kJ B) 2.48x10$ kJ C) 2.5x1010 kJ D) 2.67x10° kJ
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