Co-ordinated Sciences Practical 7: Physics Investigations

Study guide

Double-award mechanics, thermal, wave, circuit and magnetism investigations for Paper 5 and Paper 6.

Cambridge IGCSE Co-ordinated Sciences 0654 Physics practical questions test measurement, derived quantities, relationships, comparisons, heating and cooling, springs, motion, circuits and optics. These contexts are not guaranteed recipes. Strong preparation connects stable geometry, correct instruments, raw readings, graphical evidence and method-specific evaluation so the same AO3 reasoning transfers to unfamiliar simple apparatus.

A Cambridge IGCSE Co-ordinated Sciences Physics investigations map connecting mechanics, thermal work, springs and motion, circuits and optics to shared measurement controls

Physical measurements begin with a defined quantity

Official contexts include length, volume and force. Select a ruler, measuring cylinder, force meter or other stated instrument whose range and resolution fit the expected value.

Check zero, units and scale divisions before reading. Keep the eye perpendicular to the scale and use a set square or fixed pointer where alignment matters.

Record the raw reading before a difference, ratio or derived quantity.

Repeated objects improve a small-distance estimate

When one thickness or diameter is too small for a reliable direct measurement, measure many identical items together and divide by their number.

This makes the measured total larger relative to the ruler division. Keep objects tightly packed without gaps or overlap.

The method reduces percentage uncertainty from scale resolution, but it does not correct a damaged ruler zero or consistently compressed material.

Repeated cycles improve a short-time estimate

Time ten or more oscillations, then divide the total duration by the number of complete cycles to estimate one period.

Use a fixed fiducial marker and define the same phase of motion as the start and finish. Repeat the multi-cycle timing and calculate a representative value.

Counting an extra half-cycle creates a large method error that averaging cannot repair.

Derived quantities preserve their input evidence

Resistance may be calculated from potential difference divided by current; density from mass divided by volume; acceleration from change in velocity divided by time when the necessary data are supplied.

Keep the measured quantities in the table before the derived column. Use consistent units and show the calculation.

Uncertainty in the derived result depends on its inputs, so evaluate the weakest measurement rather than only the calculator output.

Density requires matched mass and volume

Measure mass with a balance. For a regular solid, calculate volume from carefully measured dimensions. For an irregular solid, use displacement when the material and setup make it suitable.

Check this topic from memory

Attempt the matching topic bank before reopening the notes. Use each missed idea to decide what to review next.

Start the topic quiz

Sources

  1. Cambridge IGCSE Co-ordinated Sciences 0654 syllabus for 2025-2027
  2. Cambridge IGCSE (9-1) Co-ordinated Sciences 0973 syllabus for 2025-2027