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Intermediate

Relative Formula Mass and Percentage by Mass

4.3.1.2 Relative formula mass

Aligned to the AQA 8462 specification

Level
Intermediate
Reading time
5 min
Published
2 July 2026
On this page
  1. 1.What Relative Formula Mass Means
  2. 2.Handling Subscripts and Brackets
  3. 3.Mr Confirms Conservation of Mass
  4. 4.Percentage by Mass of an Element
  5. 5.Percentage by Mass in Practice
  6. 6.Common Exam Mistakes

Key takeaways

  • The relative formula mass (Mr) of a compound is the sum of the relative atomic masses (Ar) of all the atoms shown in its formula.
  • A subscript multiplies only the atom it follows, and a bracket subscript multiplies everything inside the bracket, so Ca(OH)₂ contains one Ca, two O and two H.
  • In a balanced equation the total Mr of the reactants equals the total Mr of the products, which is another way of stating conservation of mass.
  • Percentage by mass of an element = (Ar × number of atoms of that element ÷ Mr of the compound) × 100.

What Relative Formula Mass Means

Atoms are far too light to weigh in grams, so chemists compare their masses on a relative scale. The relative atomic mass (Ar) of an element is its average atomic mass compared with one twelfth of a carbon-12 atom. You read Ar values straight from the periodic table.

The relative formula mass (Mr) of a compound is simply the sum of the relative atomic masses of every atom in its formula.

Mr = sum of the Ar of all the atoms in the formula. It has no units.

The Ar values you need for the worked examples below are:

ElementHCNONaMgSClCaFeCu
Ar112141623243235.5405663.5

Worked example — find the Mr of water, H₂O:

Worked example — find the Mr of carbon dioxide, CO₂:

Handling Subscripts and Brackets

Getting the Mr right depends on counting atoms correctly. A subscript multiplies only the symbol directly in front of it. A subscript outside a bracket multiplies everything inside that bracket.

A bracket subscript applies to every atom inside the bracket. In Mg(NO₃)₂ the 2 multiplies both the N and the three O atoms.

Worked example — find the Mr of calcium hydroxide, Ca(OH)₂:

The 2 outside the bracket doubles both the O and the H inside it.

Worked example — find the Mr of magnesium nitrate, Mg(NO₃)₂:

Each nitrate group is N + 3O = 14 + 48 = 62, and there are two of them.

Set the calculation out in stages. Working out the mass of one bracket group first, then multiplying, avoids the most common counting slip.

Mr Confirms Conservation of Mass

In a balanced equation, the total relative formula mass of the reactants (counting the multipliers) equals the total relative formula mass of the products. This is conservation of mass expressed in numbers, and it is a quick way to check that an equation is balanced correctly.

Worked example — check the totals for the reaction of hydrogen with oxygen:

SideSpeciesMr contribution
Reactants2 × H₂2 × (2 × 1) = 4
Reactants1 × O₂1 × (2 × 16) = 32
Products2 × H₂O2 × 18 = 36

Total reactants = 4 + 32 = 36. Total products = 36. The two totals match, confirming the equation balances and mass is conserved.

Percentage by Mass of an Element

The percentage by mass of an element tells you what fraction of a compound's mass comes from that element. It matters in real chemistry: a fertiliser is judged partly on its percentage of nitrogen, and an ore on its percentage of metal.

Worked example — find the percentage by mass of calcium in calcium carbonate, CaCO₃.

First the Mr: .

The mass due to calcium is one Ca = 40.

Worked example — find the percentage by mass of iron in iron(III) oxide, Fe₂O₃.

Mr = . Mass due to iron = 2 × 56 = 112.

An ore containing 70% iron by mass is far richer than one containing 30%, which is exactly the kind of comparison this calculation supports.

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Percentage by Mass in Practice

Percentage-by-mass questions often compare two compounds, so being methodical pays off. Work out the Mr, identify the total mass contributed by the element you want, then apply the formula.

Worked example — which contains the higher percentage of nitrogen by mass: ammonium nitrate, NH₄NO₃, or ammonia, NH₃?

For NH₄NO₃, Mr = . Mass of nitrogen = 2 × 14 = 28.

For NH₃, Mr = . Mass of nitrogen = 14.

Ammonia has a higher percentage of nitrogen by mass (82.4% against 35%). This kind of comparison explains why chemists compare fertilisers on their nitrogen content per kilogram, not just by name.

Common Exam Mistakes

1. Ignoring a bracket subscript

In Ca(OH)₂ the 2 applies to both the O and the H inside the bracket, giving two O and two H. Forgetting this gives an Mr of 57 instead of the correct 74.

2. Multiplying only the nearest atom in a bracket

The subscript outside a bracket multiplies every atom inside. In Mg(NO₃)₂ it doubles the N and all three O atoms, not just the last O.

3. Using mass number instead of relative atomic mass

Read Ar values from the periodic table. Chlorine's Ar is 35.5, not 35, because it is an average over its isotopes; using 35 gives a wrong Mr.

4. Forgetting to multiply by 100 in a percentage

Percentage by mass is a fraction times 100. Leaving out the ×100 gives a decimal like 0.40 instead of 40%.

5. Using the wrong element mass in the percentage formula

The numerator is the total mass of the chosen element in the whole formula. For Fe₂O₃ that is 2 × 56 = 112, not a single 56.

Key terms

Relative atomic mass (Ar)
The average mass of the atoms of an element, compared with one twelfth of the mass of a carbon-12 atom.
Relative formula mass (Mr)
The sum of the relative atomic masses of all the atoms in the formula of a compound.
Percentage by mass
The fraction of a compound's total mass that is due to a particular element, expressed as a percentage.

Frequently asked questions

Add up the relative atomic mass (Ar) of every atom in the formula. For water, H₂O, that is (2 × 1) + 16 = 18. A subscript outside a bracket multiplies every atom inside the bracket.

Divide the total mass of that element by the relative formula mass of the compound, then multiply by 100. For calcium in CaCO₃ (Mr 100), it is (40 ÷ 100) × 100 = 40%.

No. Relative formula mass (Mr) is a ratio compared with one twelfth of a carbon-12 atom, so it is just a number with no units, like relative atomic mass.

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