Browse SubjectsChemistry — Semester B
Chemistry · Semester B TEKS 14A-14C
HardCalcWord

Helium-4's actual measured mass is 4.002602 amu. It is built from 2 protons and 2 neutrons — using the mass of a hydrogen-1 atom (1.007825 amu, which already includes 1 electron, matching how 2 H-1 atoms plus 2 neutrons account for helium's 2 protons, 2 neutrons, and 2 electrons) and a free neutron's mass (1.008665 amu), calculate helium-4's mass defect and resulting nuclear binding energy in MeV (1 amu of mass defect = 931.5 MeV of binding energy).

AMass defect ≈ 0.030378 amu; binding energy ≈ 28.3 MeV, matching helium-4's real, exceptionally high stability
BMass defect ≈ −0.030378 amu, from subtracting in the reverse order (actual mass minus the sum of separate parts)
CBinding energy ≈ 28.3 MeV, but computed from a mass defect found using only 1 proton-equivalent and 1 neutron instead of 2 of each
DThis calculation cannot be completed without also knowing the mass of a free electron separately from the hydrogen atom's given mass

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