Bonding and structure questions reward precision: the difference between 107° and 104.5°, between a permanent dipole and an induced one, between what melts NaCl and what boils HF. This quiz tests that precision across the whole bonding topic.
The bonding-type questions cover ionic, covalent and metallic bonding through the properties each produces — the electrostatic lattice behind ionic melting points, the delocalised electron sea behind metallic conductivity — plus the coordinate (dative covalent) bond, defined exactly: both shared electrons originating from one atom.
Shape questions apply electron-pair repulsion theory the way exams do: NH₃ and PH₃ as the 107° pyramidal pair, SF₆ octahedral at 90°, BF₃ trigonal planar at 120°, with lone-pair compression of bond angles tested as the underlying principle rather than a memorised list.
The intermolecular forces cluster is the analytical heart of the set: which molecules are polar (asymmetry plus electronegativity difference — both required, and tested as a pair), why HF boils far above HCl (hydrogen bonding versus dipole-dipole), and the universal induced-dipole forces whose strength scales with electron count. These are exactly the explain-the-boiling-point questions that appear on every paper.
Every explanation names the principle at work and rules out the tempting confusions — polarity without asymmetry, hydrogen bonding claimed for molecules without N, O or F. The blind-solver verification pass returned full agreement on all ten questions, and the set pairs naturally with the Periodicity quiz in this collection, where the same structural reasoning explains melting-point trends across Period 3.
Aligned to the bonding core of the DfE A level science subject content: bonding types, electron-pair repulsion and molecular geometry, electronegativity and polarity, and the three classes of intermolecular force.