England · Particle model of matter · PM-U2

PM-04 · Changes of state and latent heat

Planned lecture content and an original worked practice example. Read the scope labels before using Higher or separate-Physics branches.

Status

Lecture detail

PM-04 · PM-U2 · Planned

Changes of state and latent heat

  • ScopeShared
  • Difficulty3 / 4 · proposed
  • Time30–35 min · estimated
  • StatusPlanned

Learning objectives

Explain reversible state changes and mass conservation; calculate latent energy; interpret heating/cooling plateaux.

8463 §§4.3.1.2,4.3.2.3 / 8464 §§6.3.1.2,6.3.2.3

DfE single-science pp.42–43 / Combined pp.35. Evidence checked 30 September–1 October 2026. Skills: WS1.2,3.5; MS3c,3d,4a.

Needs firstPM-03

Explanation

During a state change, energy changes particle separation/interaction potential energy while temperature can remain constant. Specific latent heat is energy per kilogram for that change. In ordinary reversible state changes, total mass is conserved.

Concepts, equations and units: E=mL; J,kg,L in J/kg; latent fusion/vaporisation; constant-temperature phase change at stated pressure.

Prediction, demonstration and game exercise

Predict, observe, explain

Heat a fixed mass through melting and boiling; reveal energy input with constant-temperature intervals.

Planned learner game exercise

Allocate energy to a sample across states; label solid, liquid, gas and mixed-phase intervals.

Independent practice

Three latent-heat calculations and a temperature–time graph explanation, including cooling.

Original practice example · Shared

Melt 0.20 kg of a solid with latent heat 100,000 J/kg at its melting point. Find energy required.

Show working and model answer

Working / reasoning

E = mL = 0.20 × 100,000.

Answer

20,000 J.

Exit check and success criteria

Two values correct, plateau linked to potential-energy change and mass conserved.

During practice, compare the prediction with evidence and give an error-specific prompt. The exit item uses a fresh context or fresh values, answered independently.

Misconceptions, practical links and mastery

Check these misconceptions

Temperature always rises when heating; particles vanish on evaporation; latent heat means no energy transfer.

Practical preparation

Optional teacher-supervised heating/cooling demonstration; not an RP.

Virtual preparation and revision only. Required hands-on activities and school records remain separate.

Proposed mastery

0: not yet evidenced. 1: supported. 2: independent exit criteria met. 3: successful changed-context transfer. Advance at 2; revisit with fresh retrieval. These are not GCSE grades.

Unit assessment

Continue through the unit

Sources and full programme

Sources checked 30 September–1 October 2026. Specifications govern content; textbooks supplement it. England has no single prescribed Physics course book. The full planning document includes sourced comparisons of Collins separate Physics and Trilogy books, Hodder/Hachette Physics and Oxford Physics listings, with access/approval limitations.

Download the complete Markdown programme and coverage matrix

A subsection map is proposed coverage. Clause-level educator review, item moderation, model validation and hands-on provision remain release gates. No all-board alignment or exam-board endorsement is claimed.