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The ideal gas equation

Chemie A-level Updated Wed 7 Oct 2026

The ideal gas equation links the pressure, volume and temperature of a gas to the number of moles it contains. Nearly every mistake with it is a unit, so the conversions come first.

Part 1 of 3: Learn it

In short

  1. pV = nRT, with R = 8.31 J K⁻¹ mol⁻¹.
  2. p in Pa, V in m³, T in K: kPa × 1000, cm³ × 10⁻⁶, dm³ × 10⁻³, °C + 273.
  3. Rearranged for Mᵣ: Mᵣ = mRT ÷ pV.

Where this is in your specification

Spec points: AQA 7405 3.1.2.3, OCR A H432 2.1.3, Edexcel 9CH0 Topic 5

BoardTopic: Atomic structure and amount of substance
AQA 74053.1.1 and 3.1.2
Edexcel 9CH0Topics 1 and 5
OCR H4322.1.1 to 2.1.3, 2.2.1 and 3.1.1
Higher C813 761(a) Periodicity; 3(a) Getting the most from reactants

The equation and its units

p V = n R T
QuantitySI unitConversion
Pressure pPa1 kPa = 1000 Pa
Volume Vm³1 dm³ = 10⁻³ m³; 1 cm³ = 10⁻⁶ m³
Temperature TKT(K) = T(°C) + 273
Amount nmol

Why kelvin

The equation says volume is proportional to absolute temperature at constant pressure. On the Celsius scale zero is arbitrary, so doubling 20 °C to 40 °C does not double the volume; doubling 293 K to 586 K does.

Finding Mᵣ

Use pV = nRT to find n from the measured pressure, volume and temperature, then Mᵣ = mass ÷ n. This is how the relative molecular mass of a volatile liquid is found: evaporate a known mass and measure the gas volume.

Quick check

Convert 25 °C to kelvin.

Show the answer

298 K.

Part 2 of 3: See it worked

Worked examples

Example 1

How many moles of gas are in 2.00 dm³ at 100 kPa and 300 K?

  1. p = 1.00 × 10⁵ Pa, V = 2.00 × 10⁻³ m³
  2. n = pV ÷ RT = (1.00 × 10⁵ × 2.00 × 10⁻³) ÷ (8.31 × 300)
  3. = 200 ÷ 2493

Answer: 0.0802 mol.

Example 2

0.40 g of a gas occupies 250 cm³ at 101 kPa and 298 K. Find its Mᵣ.

  1. V = 2.50 × 10⁻⁴ m³, p = 1.01 × 10⁵ Pa
  2. n = (1.01 × 10⁵ × 2.50 × 10⁻⁴) ÷ (8.31 × 298) = 0.01020 mol
  3. Mᵣ = 0.40 ÷ 0.01020

Answer: 39 (2 s.f.), which fits argon.

Common mistakes

  • Using temperature in °C.
  • Converting cm³ to m³ by dividing by 1000 instead of 10⁶.
  • Leaving pressure in kPa.
  • Forgetting to convert an answer in m³ back to the units the question asks for.
Quick check

Convert 500 cm³ to m³.

Show the answer

5.00 × 10⁻⁴ m³.

Part 3 of 3: Test yourself

Check yourself

Answer each one in your head or on paper first, then open it to check.

Convert 25 °C to kelvin.

298 K.

Convert 500 cm³ to m³.

5.00 × 10⁻⁴ m³.

What happens to the volume of a fixed amount of gas at constant pressure when its kelvin temperature doubles?

It doubles.

Jobs that use this

Each link opens the job profile on the National Careers Service (England). In the rest of the UK: My World of Work (Scotland), Careers Wales, nidirect careers (Northern Ireland).

Diese Lernzettel sind auf Englisch, weil sie britischen Prüfungslehrplänen folgen.

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