Chhetri AcademyGCSE & A level Paper Builder

5.2.2.1The three states of matter

AQA GCSE Combined Science (8464), Higher tier · Chemistry › Bonding, structure, and the properties of matter › How bonding and structure are related to the properties of

Practise The three states of matter. 12 exam-style questions on this subtopic, at up to four difficulty levels, with full mark schemes and a progress tracker. Free, no account needed.

Build a paper on this topic

▶ Watch videos on The three states of matter (Free Science Lessons Combined on YouTube) · Practise all of How bonding and structure are related to the properties of

Free downloads:Open in the Notes section

Revision notes

Solids, liquids and gases, the changes of state between them, and why different substances melt and boil at different temperatures. You need to predict states from melting and boiling point data, explain changes of state in terms of energy and forces and, on the Higher tier, explain the limitations of the simple particle model.

Grade by grade

What you need to be able to do, from the first marks up to the top grade.

  1. 3
    Name the changes of stateMelting and freezing happen at the melting point; boiling and condensing happen at the boiling point.
  2. 4
    Describe particles in solids, liquids and gasesRegular and vibrating in solids, close but moving around in liquids, far apart and moving quickly in gases.
  3. 5
    Predict states from melting and boiling pointsBelow the melting point: solid; between the melting and boiling points: liquid; above the boiling point: gas.
  4. 6
    Link melting and boiling points to forcesThe stronger the forces between the particles, the more energy is needed and the higher the melting and boiling points.
  5. 6
    Recognise that single atoms lack bulk propertiesOne atom does not have properties such as colour, melting point or conductivity; these come from huge numbers of particles.
  6. 7
    Give limitations of the particle model (HT)The model shows particles as solid spheres with no forces between them; real particles are not like this.

Notes

Solids, liquids and gases

  • In the simple particle model, each particle (atom, ion or molecule) is drawn as a small solid sphere.
  • Solid: particles packed closely in a regular arrangement; they vibrate about fixed positions.
  • Liquid: particles close together but randomly arranged; they move around each other.
  • Gas: particles far apart and randomly arranged; they move quickly in all directions.

Changes of state, energy and forces

  • Melting (solid → liquid) and freezing (liquid → solid) happen at the melting point. Boiling (liquid → gas) and condensing (gas → liquid) happen at the boiling point.
  • To melt or boil a substance, energy must be transferred to it to overcome the forces between its particles. When it freezes or condenses, energy is transferred to the surroundings.
  • The stronger the forces between the particles, the more energy is needed, so the higher the melting and boiling points.
  • The strength of the forces depends on the type of bonding and structure, e.g. strong ionic bonds in sodium chloride, but only weak forces between the molecules in oxygen.
  • To predict the state at a temperature: below the melting point it is a solid; between the melting and boiling points a liquid; above the boiling point a gas.

Atoms and bulk properties

  • Melting point, colour, hardness and conductivity are bulk properties: they belong to a large collection of particles, not to a single atom.
  • For example, a single copper atom is not orange-brown, and a single water molecule does not have a boiling point.

Limitations of the particle model (Higher tier only) grade 7+

  • The model shows particles as solid spheres. Real atoms are not solid (they are mostly empty space).
  • The model shows all particles as spheres. Real particles are atoms, ions or molecules, and many molecules are not spherical.
  • The model shows no forces between the particles. In reality there are forces of attraction, and their strength decides the melting and boiling points.
  • So the simple model cannot explain why different substances change state at different temperatures.

Cheatsheet

  • Solid: close, regular, vibrate about fixed positions
  • Liquid: close, random, move around each other
  • Gas: far apart, random, move quickly in all directions
  • Melting and freezing at the melting point; boiling and condensing at the boiling point
  • Stronger forces between particles → more energy needed → higher melting and boiling points
  • Below mp: solid; between mp and bp: liquid; above bp: gas
  • Particle model limitations: particles shown as solid spheres with no forces between them grade 7+

How to answer each type of question

Predict the state of a substance from data

1 to 3 marks5
  1. Compare the temperature with the melting point first, then the boiling point.
  2. Below the melting point → solid; between the two → liquid; above the boiling point → gas.
  3. Take care with negative numbers: −183 °C is colder than −7 °C.

Example. The table gives data for three substances.
A: melting point −218 °C, boiling point −183 °C
B: melting point −7 °C, boiling point 59 °C
C: melting point 801 °C, boiling point 1413 °C
Give the state of each substance at 25 °C.

Show the model answer
A: gas (1)
B: liquid (1)
C: solid (1)

Describe what happens to the particles during a change of state

2 to 3 marks5
  1. Say that energy is transferred to (or from) the particles.
  2. Say what happens to the forces between the particles.
  3. Describe the new arrangement and movement of the particles.

Example. Describe what happens to the particles when a solid is heated until it melts.

Show the model answer
Energy is transferred to the particles, so they vibrate more (1). At the melting point they have enough energy to overcome some of the forces holding them in fixed positions (1). The particles can then move around each other in a random arrangement (1).

Explain why one substance has a higher boiling point than another

3 marks6
  1. Say which substance has the stronger forces between its particles (name the forces if you know the bonding).
  2. Say that more energy is needed to overcome these forces.
  3. Link this to the higher boiling point.

Example. Substance C boils at 1413 °C and substance B boils at 59 °C.
Explain, in terms of the forces between particles, why substance C has a much higher boiling point than substance B.

Show the model answer
The forces between the particles in C are much stronger than the forces between the particles in B (1). So much more energy is needed to overcome the forces in C (1). This means C must be heated to a much higher temperature before it boils (1).

Give limitations of the particle model (Higher tier only)

2 marks7
  1. Name what the model shows: solid spheres with no forces between them.
  2. Say how real particles are different, and what the model therefore cannot explain.

Example. In the simple particle model, particles are shown as small solid spheres.
Give two limitations of this model for explaining changes of state.

Show the model answer
Any two from:
there are no forces between the spheres, but real particles attract each other (1)
real particles are not solid / atoms are mostly empty space (1)
real particles are not all spheres (1)
it cannot explain why different substances melt or boil at different temperatures (1)

Shortcuts and memory tricks

  • Number line trick: mark the melting point and boiling point on a line, then place the temperature. Left of the mp = solid, between = liquid, right of the bp = gas.
  • Stronger forces, higher temperatures: the strength of the forces between particles decides the melting and boiling points.
  • Melting and freezing happen at the same temperature, in opposite directions. So do boiling and condensing.

Where marks are lost

  • Getting negative temperatures the wrong way round: −183 °C is lower than −7 °C.
  • Saying the particles in a solid don't move. They vibrate about fixed positions.
  • Saying the particles themselves expand or melt. The particles don't change; their energy, movement and arrangement do.
  • Saying that boiling always breaks bonds. For small molecules only the weak forces between the molecules are overcome.
  • Writing 'it needs heat' without linking the energy to overcoming the forces between particles.

Exam technique

  • In data questions, quote the numbers: 'at 25 °C, B is above its melting point (−7 °C) but below its boiling point (59 °C), so it is a liquid'.
  • Always say what is overcome: 'the forces between the particles', or name the actual bonds or forces.
  • Higher tier: learn the three limitations of the model: particles shown as solid, as spheres, and with no forces between them.

Quick recall

Cover the answers and test yourself. The app has these as flashcards that come back just before you'd forget them.

Substances can exist as solids, liquids or gases. Name the change of state when a liquid turns into a gas.
boiling / evaporating
Describe the arrangement and movement of the particles in a liquid.
Close together in a random arrangement; they move around each other.
Complete the sentence.
Melting and freezing take place at the same temperature, called the .......... .
melting point

Sample questions

Written for this site in the style of AQA exam questions. They are not taken from real past papers.

Question 1Easy4 marks
Substances can exist as solids, liquids or gases.
(a) Name the change of state when a liquid turns into a gas.[1]
(b) At which temperature does a liquid freeze?
Tick (✓) one box.[1]
  • At its melting point
  • At 0 °C for all substances
  • At 100 °C for all substances
  • At room temperature
(c) Which statement describes the particles in a solid?
Tick (✓) one box.[1]
  • Far apart and moving randomly at high speed
  • Close together and moving around each other
  • Close together in a regular arrangement, vibrating about fixed positions
  • Far apart in a regular arrangement
(d) Name the change of state when a gas turns into a liquid.[1]
Show the answer and mark scheme
(a) Answer: boiling / evaporating
  • boiling / evaporating
(b) Answer: At its melting point
(c) Answer: Close together in a regular arrangement, vibrating about fixed positions
(d) Answer: condensing
  • condensing / condensation
Question 2Medium7 marks
Particle theory can be used to explain changes of state.
(a) Describe the arrangement and movement of the particles in a liquid.[2]
(b) Describe what happens to the particles when a solid melts.[3]
(c) Sodium chloride melts at 801 °C. Ice melts at 0 °C.
Explain this difference in terms of the forces between particles.[2]
Show the answer and mark scheme
(a) Answer: Close together in a random arrangement; they move around each other.
  • close together / touching in a random arrangement
  • (particles) move around / slide past each other
(b) Answer: The particles gain energy and vibrate more; some of the forces between them are overcome; they can then move around each other.
  • particles gain (kinetic) energy / vibrate more
  • (some of the) forces between the particles are overcome
  • the particles can move around / past each other
(c) Answer: The forces between the ions in sodium chloride are much stronger than the forces between water molecules in ice, so much more energy is needed to overcome them.
  • the forces between ions in sodium chloride are much stronger than the forces between water molecules
  • so much more energy is needed to overcome them
Question 3Hard7 marks
In the simple particle model, particles are represented as small, solid, inelastic spheres that have no forces between them.
(a) Give three limitations of this model.[3]
(b) A student said:
'A copper atom is orange-brown and conducts electricity.'
Explain why the student is wrong.[2]
(c) Oxygen boils at −183 °C. Water boils at 100 °C.
Explain why the simple particle model cannot explain this difference.[2]
Show the answer and mark scheme
(a) Answer: There are forces between particles; particles are not solid (mostly empty space); particles are not all spheres; the model does not show different types of particle.
  • there are forces between particles, which the model does not show
  • the model cannot explain why substances have different melting / boiling points (or the energy needed to change state)
  • particles are not solid (atoms are mostly empty space)
  • particles are not all spherical / molecules have different shapes
  • it does not show the different types of particle (atoms, ions, molecules) or the bonding between them
(b) Answer: Colour and conductivity are bulk properties of a large number of atoms; they depend on the structure and bonding (e.g. delocalised electrons), not on single atoms.
  • colour / conductivity are bulk properties of a large number of atoms / the material as a whole
  • they depend on the structure and bonding, e.g. delocalised electrons, not on individual atoms
(c) Answer: Boiling points depend on the strength of the forces between the particles. The forces between water molecules are much stronger than those between oxygen molecules, but the model has no forces, so it cannot show this difference.
  • boiling points depend on the strength of the forces between the particles / the energy needed to overcome them
  • the forces between water molecules are stronger than those between oxygen molecules, but the model has no forces so it cannot show this

Related subtopics

Stuck? Get 1-to-1 help. Chhetri Academy tutors GCSE and A level Maths and Science online, with a free 30-minute trial lesson.

Book a free trial