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Relative Masses

An AQA-focused revision guide to relative atomic mass, relative molecular mass, relative formula mass, percentage composition and hydrated salts. These ideas support Amount of Substance calculations using the carbon-12 scale.

Paper 1 and Paper 2
AQA
3.1.2 Amount of Substance
7405/1 and 7405/2
Dr. Mohammed Al-Fatah

Written by:
Dr. Mohammed Al-Fatah

Chemistry specialist revision notes for A Level Chemistry.

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Before you start

GCSE Recap: Counting Atoms in a Formula

Before you start, check that you can count the atoms in a formula that contains brackets.

1

Relative Atomic Mass

Atoms are far too small to measure conveniently in grams during ordinary chemical calculations. Instead, atomic masses are compared with the mass of an atom of the carbon-12 isotope.

The carbon-12 scale defines one atomic mass unit as 1/12 of the mass of one carbon-12 atom. On this scale, a carbon-12 atom has a mass of exactly 12 units.

Relative atomic mass, Ar: the weighted mean mass of the atoms of an element compared with 1/12 of the mass of a carbon-12 atom.

The word weighted matters. Most elements exist as a mixture of isotopes, so the relative atomic mass takes account of both the mass of each isotope and its relative abundance.

Key idea: relative atomic mass has no unit because it is a comparison with the carbon-12 standard.

Check your understanding

Quick Check: Reading a Weighted Mean

Use the idea of a weighted mean to decide which statement about copper must be true.

2

Relative Formula Mass

The relative formula mass, Mr, is found by adding together the relative atomic masses of all the atoms shown in a formula.

The term relative molecular mass, sometimes written RMM, should only be used for substances that exist as molecules. Relative formula mass is safer because it applies to molecular substances, ionic compounds and giant structures.

Relative formula mass, Mr: the sum of the relative atomic masses of all atoms in the formula of a substance.

Substance Formula Calculation Mr
Carbon dioxide CO2 12.0 + (2 × 16.0) 44.0
Calcium carbonate CaCO3 40.1 + 12.0 + (3 × 16.0) 100.1
Magnesium nitrate Mg(NO3)2 24.3 + 2(14.0 + 3 × 16.0) 148.3

Exam focus: brackets multiply everything inside them. In Mg(NO3)2, there are two nitrogen atoms and six oxygen atoms.

Check your understanding

Quick Check: Spot the Wrong Mr Values

Check each relative formula mass and click every value that is wrong.

How to calculate relative formula masses using relative atomic masses

Relative formula mass is calculated by counting each atom in the formula and adding the correct relative atomic masses.

3

Using Mr to Find Percentage Composition

Percentage composition tells you what percentage of the mass of a compound comes from a particular element.

First calculate the Mr of the compound. Then work out the total mass contribution from the element being considered.

Percentage by mass of an element: (total Ar of that element in the formula ÷ Mr of the compound) × 100

Example: urea, CO(NH2)2

Mr = 12.0 + 16.0 + (2 × 14.0) + (4 × 1.0) = 60.0

Percentage of nitrogen in urea

Nitrogen contributes 28.0 out of 60.0, so percentage nitrogen = (28.0 ÷ 60.0) × 100 = 46.7%.

Common mistake: do not use the Ar of a single atom if the formula contains more than one atom of that element.

Check your understanding

Quick Check: Percentage by Mass

Answer three questions on percentage composition, including one that runs the formula backwards.

Calculating percentage composition in chemistry from relative formula mass

Percentage composition compares the mass contribution of one element with the total relative formula mass of the compound.

4

Hydrated Salts

A hydrated salt is an ionic compound that contains water of crystallisation in its solid crystal structure. This water is shown using a dot in the formula, such as CuSO4·5H2O.

When a hydrated salt is heated strongly, the water of crystallisation can be driven off. The remaining solid is called the anhydrous salt.

Hydrated salt: a crystalline salt that contains a fixed number of water molecules chemically incorporated into its crystal structure.

Term Meaning Example
Hydrated Contains water of crystallisation. CuSO4·5H2O
Anhydrous Contains no water of crystallisation. CuSO4
Dot formula Shows the ratio of salt formula units to water molecules. ZnSO4·7H2O
Check your understanding

Quick Check: Reading a Dot Formula

Type the answer to each question about a hydrated salt.

Heating a hydrated salt in a crucible to remove water of crystallisation

Heating a hydrated salt in a crucible allows the mass of water lost to be compared with the mass of anhydrous salt remaining.

5

Finding x in a Hydrated Salt Formula

To find the value of x in a formula such as ZnSO4·xH2O, compare the number of moles of anhydrous salt with the number of moles of water lost.

  1. Find the mass of water lost: hydrated salt mass minus anhydrous salt mass.
  2. Calculate moles of anhydrous salt using mass ÷ Mr.
  3. Calculate moles of water using mass ÷ 18.0.
  4. Divide both mole values by the smaller value to find the simplest ratio.

Worked pattern

If 3.51 g of hydrated zinc sulfate gives 1.97 g of anhydrous ZnSO4, then mass of water lost = 3.51 − 1.97 = 1.54 g.

Mole ratio

Moles of ZnSO4 = 1.97 ÷ 161.5 = 0.0122. Moles of H2O = 1.54 ÷ 18.0 = 0.0856. The ratio is approximately 1:7, so x = 7.

Final formula: ZnSO4·7H2O.

Check your understanding

Quick Check: Order the Steps to Find x

Drag the steps of the calculation into the right order.

Check your understanding

Quick Check: Find x from Experimental Data

Work each problem out on paper before you turn the card.

6

Common Exam Points

  • Relative atomic mass, Ar, is measured relative to 1/12 of the mass of a carbon-12 atom.
  • Ar is a weighted mean when an element has naturally occurring isotopes.
  • Relative formula mass, Mr, is found by adding the Ar values of all atoms in the formula.
  • Use brackets carefully. A subscript outside a bracket multiplies every atom inside the bracket.
  • Percentage composition uses the mass contribution of one element divided by the total Mr, multiplied by 100.
  • Hydrated salts contain water of crystallisation.
  • Anhydrous salts contain no water of crystallisation.
  • In hydrated salt calculations, the mass of water lost is found by subtracting the anhydrous mass from the hydrated mass.
  • To find x in a hydrate, compare the mole ratio of anhydrous salt to water.

QuickSnap

This text summary condenses the page into the essential exam ideas.

  • Ar: weighted mean mass of atoms compared with 1/12 of carbon-12.
  • Mr: sum of all relative atomic masses in the formula.
  • Percentage composition: mass of the element in the formula ÷ total Mr × 100.
  • Hydrated salt: a crystalline salt containing water of crystallisation.
  • Anhydrous salt: the salt after water of crystallisation has been removed.
  • Hydrate ratio: calculate moles of salt and water, then divide by the smaller value.
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FAQs

These questions address common misconceptions students have when working with relative masses.

What is relative atomic mass?

Relative atomic mass is the weighted mean mass of atoms of an element compared with 1/12 of the mass of a carbon-12 atom.

What is the difference between Ar and Mr?

Ar is used for an element. Mr is used for a formula and is found by adding together the Ar values for all atoms in that formula.

When should I use relative formula mass instead of relative molecular mass?

Relative molecular mass applies to molecular substances. Relative formula mass is more general because it can be used for ionic compounds, molecules and giant structures.

How do I calculate percentage composition?

Find the total mass contribution from the element in the formula, divide by the Mr of the compound, then multiply by 100.

What is water of crystallisation?

Water of crystallisation is water chemically incorporated into the crystal structure of a hydrated salt in a fixed ratio.

How do I find x in a hydrated salt formula?

Calculate moles of anhydrous salt and moles of water lost, then divide both values by the smaller mole value to obtain the simplest ratio.

Copyright notice: This OLS revision content, including the explanations, layout, diagrams, tables and embedded learning structure, is authored for Online Learning System by Dr. Mohammed Al-Fatah. It may not be copied, reproduced, redistributed or adapted without written permission.