England · Forces and motion · FM-U6

FM-18 · Liquid depth, upthrust, floating and sinking

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

Status

Lecture detail

FM-18 · FM-U6 · Planned

Liquid depth, upthrust, floating and sinking

  • ScopeSeparate Physics Higher
  • Difficulty4 / 4 · proposed
  • Time35–40 min · estimated
  • StatusPlanned

Learning objectives

Calculate liquid pressure changes; explain upthrust and buoyancy using pressure differences.

8463 §§4.5.5.1.2 / No Trilogy counterpart

DfE single-science pp.35–37 / Combined pp.30–32. Evidence checked 30 September–1 October 2026. Skills: WS1.2,3.6; MS3b,3c,4a.

Needs firstFM-17,PM-01

Explanation

Greater liquid depth means a taller liquid column above a point. A submerged body therefore has greater pressure beneath than above, producing upthrust. Floating equilibrium requires upthrust to balance weight; it does not remove gravity.

Concepts, equations and units: p=hρg for pressure due to liquid column; Pa, m, kg/m³, N/kg; upthrust N; total pressure may include atmosphere.

Prediction, demonstration and game exercise

Predict, observe, explain

Place pressure sensors at several depths and on upper/lower faces of a block.

Planned learner game exercise

Choose a vessel and cargo density to float; reconcile upward/downward forces and depth data.

Independent practice

Two pressure-difference calculations and annotated floating/sinking explanations.

Original practice example · Separate Physics Higher

Find water-column pressure 2.0 m deep using ρ = 1000 kg/m³ and g = 10 N/kg, excluding atmosphere.

Show working and model answer

Working / reasoning

p = hρg = 2.0 × 1000 × 10.

Answer

20,000 Pa due to the water column.

Exit check and success criteria

Both values correct and upward resultant linked to greater pressure below; floating force balance correct.

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

Use total pressure as liquid-only contribution; floating requires no weight; larger density always means larger upthrust independent of displaced volume.

Practical preparation

Optional flotation/pressure-column demonstration.

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.