Q.How would you explain the fact that first ionisation enthalpy of sodium is lower than that of magnesium but its second ionisation enthalpy is higher than that of magnesium?
You're viewing a preview — the full solution, concept, methods & PYQ mapping are locked.
Start your 14-day free trial to unlock the full solution →Sodium's first ionisation is easier because it removes a lone electron, while magnesium must break into a stable pair. Sodium's second ionisation is harder because it must rip an electron from a stable, tightly-held noble-gas core, whereas magnesium's second electron still comes from the valence shell.
Why ionisation energies depend on electron configuration
Ionisation enthalpy measures how tightly an atom holds its outermost electron. The key factors are nuclear charge (more protons pull harder), shielding (inner electrons screen the nucleus), and the stability of the electron configuration before and after removal.
When comparing successive ionisations of two elements, you must ask: which shell is the electron coming from? Removing an electron from a filled, stable inner shell costs far more energy than plucking one from a half-filled or loosely-held valence shell.
Step-by-step comparison
1. Electronic configurations
Write out what we're working with:
2. First ionisation enthalpy: Na < Mg
For sodium, the first ionisation removes the single electron:
This electron is alone in the orbital, experiences relatively weak pairing repulsion, and its removal yields the exceptionally stable neon configuration. The process is comparatively easy.
For magnesium, the first ionisation removes one electron from the paired :
Magnesium has one extra proton (nuclear charge vs. ), so its electrons feel a stronger effective pull. Even though electron–electron repulsion in the pair slightly raises energy, the higher nuclear charge dominates. Magnesium holds its first electron more tightly.
Across a period, ionisation enthalpy generally increases with nuclear charge. Sodium's single electron is an exception because it sits alone and leads directly to a noble-gas configuration.
3. Second ionisation enthalpy: Na > Mg
Now consider removing a second electron.
For sodium, has the configuration — a closed neon core. The second ionisation must break into this stable, inner shell:
The electrons are much closer to the nucleus (principal quantum number vs. ), experience far less shielding, and belong to a completely filled, stable octet. Ripping one out requires enormous energy.
For magnesium, still has one electron left:
The second ionisation removes this remaining valence electron:
…
Unlock everything free for 14 days
- Full step-by-step solutions
- Concept-first explanations
- Methods, shortcuts & mistakes
- PYQ mapping + timed mock tests
Full access for 14 days. No credit card required.