A-Level Chemistry: Periodicity, Group 2 and Group 7

Inorganic trend questions are the most pattern-rich territory in A-Level Chemistry: the marks go to those who can both state the trend and explain the structure behind it. This quiz covers Period 3, Group 2 and Group 7 — the three trend systems every specification examines.

The Period 3 questions target the explanations rather than the bare facts: why silicon's melting point towers over phosphorus's (giant covalent lattice against simple P₄ molecules), and both canonical ionisation-energy dips — magnesium to aluminium (the 3p electron above 3s) and phosphorus to sulfur (paired-electron repulsion) — each tested through its reason, with the electron configurations given in the question so the reasoning is the skill.

The Group 2 questions cover the down-group trends that must be kept straight in pairs: hydroxide solubility rising while sulfate solubility falls, and the practical chemistry hanging off them, with magnesium hydroxide's antacid role as the applied example.

Group 7 gets the fullest treatment: boiling points rising with van der Waals strength, electronegativity falling with radius, oxidising power demonstrated through displacement (chlorine turning potassium bromide solution orange), the silver nitrate/ammonia halide identification scheme, and both chlorine disproportionations — in water to HCl and HClO, and in cold dilute sodium hydroxide to chloride and chlorate(I), with the oxidation-state bookkeeping (0 to −1 and +1 simultaneously) made explicit.

The blind-solver verification pass returned complete agreement across all ten questions. Explanations consistently follow the state-the-trend, name-the-cause structure that inorganic mark schemes reward.

  • Explain Period 3 melting point and ionisation energy patterns structurally
  • Keep Group 2 hydroxide and sulfate solubility trends straight
  • Rank halogen oxidising power and predict displacement outcomes
  • Apply the silver nitrate and ammonia halide identification scheme
  • Track oxidation states through chlorine's disproportionation reactions

Aligned to the inorganic core of the DfE A level science subject content: periodicity across Period 3, Group 2 trends and uses, and Group 7 oxidising ability, tests and disproportionation.

Sample question

Which factor primarily explains the dip in first ionisation energy between Magnesium (1s2 2s2 2p6 3s2) and Aluminium (1s2 2s2 2p6 3s2 3p1)?

See the answer

The 3p electron in Aluminium is in a higher energy subshell

The first ionisation energy of Aluminium is lower than that of Magnesium because the valence electron in Aluminium is in a 3p orbital, which is slightly further from the nucleus and shielded by the 3s2 electrons, making it easier to remove.

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