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Cambridge International AS & A Level Chemistry – Physical Chemistry

Topic 5
Chemical Energetics

Topic 5 covers the energy changes that accompany chemical reactions: exothermic and endothermic reactions, reaction pathway diagrams and activation energy, standard conditions of 298 K and 101 kPa, the enthalpy changes of reaction, formation, combustion and neutralisation, calculating enthalpy changes from experimental results, bond energies, and Hess’s law energy cycles. Lattice energy and Born-Haber cycles follow at A Level in Topic 23.

Exam Papers
Papers 1 & 2
9701 AS Level
Learning Outcomes
5.1 – 5.2
9 outcomes covered
Topic Parts
5 of 5 live
Revision notes available
Exam Board
Cambridge
9701 (2025 onwards)
Specification Coverage

Topic 5 Chemical Energetics – Cambridge International AS Level Chemistry

The following Cambridge learning outcomes state what candidates should be able to do. Wording is taken from the Cambridge International AS & A Level Chemistry (9701) syllabus.

5.1 Enthalpy change, ΔH

5.1.1
understand that chemical reactions are accompanied by enthalpy changes and these changes can be exothermic (ΔH is negative) or endothermic (ΔH is positive)
5.1.2
construct and interpret a reaction pathway diagram, in terms of the enthalpy change of the reaction and of the activation energy
5.1.3
define and use the terms:
a
standard conditions (this syllabus assumes that these are 298 K and 101 kPa) shown by ⦵
b
enthalpy change with particular reference to: reaction, ΔHr, formation, ΔHf, combustion, ΔHc, neutralisation, ΔHneut
5.1.4
understand that energy transfers occur during chemical reactions because of the breaking and making of chemical bonds
5.1.5
use bond energies (ΔH positive, i.e. bond breaking) to calculate enthalpy change of reaction, ΔHr
5.1.6
understand that some bond energies are exact and some bond energies are averages
5.1.7
calculate enthalpy changes from appropriate experimental results, including the use of the relationships q = mcΔT and ΔH = –mcΔT/n

5.2 Hess’s law

5.2.1
apply Hess’s law to construct simple energy cycles
5.2.2
carry out calculations using cycles and relevant energy terms, including:
a
determining enthalpy changes that cannot be found by direct experiment
b
use of bond energy data