Find the nuclear binding energy of potassium-40 (atomic mass = 39.9632591 amu) in units of joules per nucleon. [Data: neutron mass = 1.674928 × 10–24g; proton mass = 1.672623 × 10–24g; electron mass = 9.109387 × 10–28g; NA = 6.0221367 × 1023 /mol; c = 2.99792458 × 108 m/s] A. 1.37 × 10–12 J/nucleon B. 5.48 × 10–11 J/nucleon C. 5.64 × 10–11 J/nucleon D. 1.41 × 10–12 J/nucleon E. 2.97 × 10–12 J/nucleon

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  1. Find the nuclear binding energy of potassium-40 (atomic mass = 39.9632591 amu) in units of joules per nucleon. [Data: neutron mass = 1.674928 × 10–24g; proton mass = 1.672623 × 10–24g; electron mass = 9.109387 × 10–28g; NA = 6.0221367 × 1023 /mol; c = 2.99792458 × 108 m/s]
    A. 1.37 × 10–12 J/nucleon
    B. 5.48 × 10–11 J/nucleon
    C. 5.64 × 10–11 J/nucleon
    D. 1.41 × 10–12 J/nucleon
    E. 2.97 × 10–12 J/nucleon



  2. Calculate the energy released in joules when one mole of polonium-214 decays according to the equation 214/ 84 Po = 210/82 Pb + 4/2 He 

     [Atomic masses: Pb-210 = 209.98284 amu, Po-214 = 213.99519 amu, He-4 = 4.00260 amu.] 

    A. 8.78 x 1014J/Mol 
    B.  7.2 x 1014J/Mol 
    C. 8.78 x 1011J/Mol 
    D. -9.75 x 10-3J/Mol 
    E. 1.46 x 10-9J/Mol 


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