Back to top

Form 4 · Chapter 5

Waves: Paper 3 Guide (Form 4 SPM Physics)

Paper 3 (4531/3) tests experimental skills. This guide covers the experiment skills relevant to Waves (Form 4): variables, tabulation, graph plotting, gradient analysis and the precautions examiners look for.

  • Specialist SPM Physics tutoring
  • 5,000+ students helped
  • Experienced Physics teachers
  • Fully online 1-to-1, nationwide
  • Real 1-hour paid trial, from RM50/hr
  • Built on the official SPM syllabus

Paper 3 at a glance

  • Paper 3 carries 15 marks

About this chapter

The DSKP lists no Paper-3 style experiment for this chapter; its Paper 3 relevance is the shared skills below. Practise them on these experiments from the same form:

Experiment: Pressure and temperature of a fixed mass of gas at constant volume (pressure law)

To investigate the relationship between the pressure and the temperature of a fixed mass of gas kept at constant volume.

  • Manipulated: Temperature of the gas, θ
  • Responding: Pressure of the gas, P
  • Constant: Volume and the mass of the trapped gas
  • Graph: Plot P (y-axis) against temperature θ in °C (x-axis). The straight line, extended back to P = 0, cuts the temperature axis near −273 °C (absolute zero).
  • Analysis: At constant volume the pressure is directly proportional to the absolute (kelvin) temperature, so P / T = constant. Extrapolating the line to zero pressure gives absolute zero at about −273 °C.

Experiment: Determining the refractive index of a glass block

To determine the refractive index of a glass block by measuring the angle of incidence and the angle of refraction.

  • Manipulated: Angle of incidence, i
  • Responding: Angle of refraction, r
  • Constant: The same glass block (same medium)
  • Graph: Plot sin i (y-axis) against sin r (x-axis). A straight line through the origin shows sin i is directly proportional to sin r; the gradient is the refractive index.
  • Analysis: By Snell's law, n = sin i / sin r. The gradient of the sin i against sin r graph gives the refractive index n of the glass.

Experiment: Determining the refractive index of glass by real depth and apparent depth

To determine the refractive index of glass by comparing the real depth and the apparent depth of a mark seen through glass blocks.

  • Manipulated: Real depth of the mark, H (using glass blocks of different thickness)
  • Responding: Apparent depth of the mark, h
  • Constant: The same type of glass and the same viewing method
  • Graph: Plot the real depth H (y-axis) against the apparent depth h (x-axis). A straight line through the origin shows H is directly proportional to h; the gradient is the refractive index.
  • Analysis: The refractive index is n = real depth / apparent depth = H / h. The gradient of the H against h graph gives the refractive index of the glass.

Paper 3 skill checklist

  • Table: quantities with units in the headings, consistent decimal places, derived column calculated correctly.
  • Graph: axes labelled with unit, scale using more than half the grid, points plotted with a sharp pencil, best-fit line.
  • Gradient: a large triangle on the line, coordinates shown, unit of the gradient stated.
  • Relationship: "y increases linearly with x" or "y is directly proportional to x" only if the line passes through the origin.
  • Precaution: one that improves accuracy, stated with its reason.

More on graph skills

Exam tip

Units on every calculation line; no formula is provided in the SPM Physics papers.

More Waves resources

Source: DSKP KSSM Physics Form 4 and 5 (Versi English), Sijil Pelajaran Malaysia: Format Pentaksiran mulai 2021, Fizik (4531) (Bahagian Pembangunan Kurikulum (BPK), KPM)

Written by the spmphysics.com.my editorial team.· Updated 5 Sept 2026

Frequently asked questions

Is this paper 3 guide page based on the official syllabus?
Yes. Content standards and experiment names come from the KSSM Physics DSKP and the paper structure from the LP 4531 format book; the site's own explanations are marked as editorial.
Can a tutor go through Waves with me 1-to-1?
Yes, lessons are online, 1-to-1, with experienced teachers, from RM50/hr. Book a one-hour paid trial on WhatsApp and name this chapter.

Book a Trial Class

One-hour paid trial · Same-day reply · from RM50/hr

Book a Trial Class

One-hour paid trial · Same-day reply