The difference between an atom's mass and the sum of the masses of its protons and neutrons
Δm = Zmp?+ (A – Z)mn?– mtotal

A system of separated nucleons has a greater mass than a system of bound nucleons
The energy required to break a nucleus into its constituent protons and neutrons
E = Δmc2
Avoid describing the binding energy as the energy stored in the nucleus – this is not correct – it is energy that must be put into the nucleus to pull it apart.
The binding energy of a nucleus divided by the number of nucleons in the nucleus

By plotting a graph of binding energy per nucleon against nucleon number, the stability of elements can be inferred

Step 1: ???????????Calculate the mass defect
Number of protons, Z = 26
Number of neutrons, A – Z = 56 – 26 = 30
Mass defect, Δm = Zmp?+ (A – Z)mn?– mtotal
Δm = (26 × 1.673 × 10-27) + (30 × 1.675 × 10-27) – (9.288 × 10-26)
Δm = 8.680 × 10-28?kg
Step 2: ???????????Calculate the binding energy of the nucleus
Binding energy, E = Δmc2
E = (8.680 × 10-28) × (3.00 × 108)2?= 7.812 × 10-11?J
Step 3: ???????????Calculate the binding energy per nucleon

Step 4:??????????? Convert to MeV
J → eV: divide by 1.6 × 10-19
eV → MeV: divide by 106

Checklist on what to include (and what not to include) in an exam question asking you to draw a graph of binding energy per nucleon against nucleon number:
轉載自savemyexams
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