Problem

Consider four nuclei: (A) deuterium 2H^{2}\text{H}, (B) helium-4 4He^{4}\text{He}, (C) iron-56 56Fe^{56}\text{Fe}, (D) uranium-238 238U^{238}\text{U}. Their binding energies per nucleon are approximately: A 1,11{,}1; B 7,17{,}1; C 8,88{,}8; D 7,6 MeV/nucleon7{,}6\ \text{MeV/nucleon}. Rank the four nuclei from most to least stable per nucleon.

Comparing the given values:

C (8,8)>D (7,6)>B (7,1)>A (1,1)C\ (8{,}8) > D\ (7{,}6) > B\ (7{,}1) > A\ (1{,}1)

Iron-56 is the most stable: it sits near the peak of the binding energy curve, the region of most tightly bound nuclei. Deuterium, which has only a single proton-neutron bond, is by far the least stable per nucleon.

C>D>B>A\ev{C > D > B > A}

Connections

Topics: Nuclear physics Concepts: Nuclear binding energy Skills: Ranking reasoning