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5.4.2.3Soluble salts

AQA GCSE Combined Science (8464), Higher tier · Chemistry › Chemical changes › Reactions of acids

Practise Soluble salts. 19 exam-style questions on this subtopic, at up to four difficulty levels, with full mark schemes and a progress tracker. Free, no account needed.

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How to make a pure, dry sample of a soluble salt from an acid and an insoluble solid (a metal, metal oxide, hydroxide or carbonate). This is required practical 1, so expect 4 to 6 mark method questions and questions on why each step is done.

Grade by grade

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

  1. 3
    Name reactants needed to make a saltFor example, copper(II) oxide and sulfuric acid make copper(II) sulfate.
  2. 4
    Describe filtering and crystallisingFilter off the excess solid, heat to evaporate some water, then leave the solution to cool and crystallise.
  3. 5
    Explain why excess solid is addedExcess solid makes sure all the acid reacts, so the salt solution contains no leftover acid.
  4. 5
    Tell when the solid is in excessSolid stays undissolved at the bottom, and for a carbonate the fizzing stops.
  5. 6
    Describe the full method for a saltWarm acid, add solid until in excess, filter, evaporate some water, crystallise, then dry the crystals.
  6. 7
    Choose suitable reactants for a named saltPick the acid with the right negative ion and an insoluble compound of the metal (or a metal that is safe to use).

Notes

The idea

  • A soluble salt can be made by reacting an acid with a solid, insoluble substance: a metal, metal oxide, metal hydroxide or metal carbonate.
  • Choose the acid for the salt you want: sulfuric acid for a sulfate, hydrochloric acid for a chloride, nitric acid for a nitrate.
  • Example: copper(II) oxide + sulfuric acid → copper(II) sulfate + water.
  • The solid is added in excess (more than is needed) so that all the acid reacts. The leftover solid is easy to remove by filtering.

Method (required practical 1)

  • 1. Measure dilute acid (e.g. 40 cm3 of sulfuric acid) into a beaker and warm it gently with a Bunsen burner. Do not boil it.
  • 2. Add the insoluble solid a little at a time, stirring, until some solid is left over and will not dissolve. With a carbonate, the fizzing stops.
  • 3. Filter the mixture to remove the excess solid. The filtrate is the salt solution.
  • 4. Heat the filtrate in an evaporating basin, using a water bath or electric heater, until about half of the water has evaporated or crystals start to form.
  • 5. Leave the solution to cool so that crystals form.
  • 6. Filter off the crystals and dry them between sheets of filter paper or in a warm place.

Why each step matters

  • Warming the acid speeds up the reaction.
  • Excess solid makes sure no acid is left, so the salt is not contaminated with acid.
  • Filtering removes the unreacted solid, leaving only the salt solution.
  • Heating gently and not to dryness gives crystals; boiling it dry can make the solution spit and leaves a powder.
  • Wear eye protection: the acid and the hot solutions are hazards.

Cheatsheet

  • insoluble solid (metal, oxide, hydroxide, carbonate) + acid → soluble salt solution
  • Add the solid in excess → all the acid reacts
  • Filter → removes the excess solid
  • Evaporate some water (water bath) → cool → crystals form
  • Dry the crystals between filter paper or in a warm place
  • CuO + H2SO4 → CuSO4 + H2O (black solid → blue solution)
  • ZnCO3 + 2HCl → ZnCl2 + H2O + CO2

How to answer each type of question

Explain why a step is done

1 mark each5
  1. Link each step to its purpose: warming (faster), excess (all acid reacts), filtering (remove excess solid).
  2. Give the specific reason, not just 'to make it work'.

Example. A student makes copper(II) chloride from copper(II) carbonate and dilute hydrochloric acid.
(a) Why is excess copper(II) carbonate added?
(b) How can the student tell that the copper(II) carbonate is in excess?
(c) Why is the mixture then filtered?

Show the model answer
(a) To make sure all the acid has reacted / is used up (1)
(b) Solid is left over / no more dissolves / the fizzing stops (1)
(c) To remove the excess (unreacted) copper(II) carbonate (1)

6-mark: describe how to make a pure, dry sample of a named salt

4 to 6 marks6
  1. Name the reactants: the acid and the insoluble solid.
  2. Warm the acid, then add the solid until it is in excess.
  3. Filter to remove the excess solid.
  4. Heat to evaporate some water, then leave to cool and crystallise.
  5. Filter off the crystals and dry them.

Example. Describe how you would make a pure, dry sample of zinc sulfate crystals from zinc oxide and dilute sulfuric acid. [6 marks]

Show the model answer
Marked in levels. A top-level answer is a complete method in a logical order, such as:
Warm some dilute sulfuric acid in a beaker (1)
Add zinc oxide a little at a time, stirring (1)
until no more dissolves / zinc oxide is in excess (1)
Filter to remove the excess zinc oxide (1)
Heat the filtrate (on a water bath) until crystals start to form, then leave it to cool so crystals form (1)
Filter off the crystals and dry them between filter papers (1)

Choose reactants for a named salt

2 to 3 marks7
  1. The acid gives the second part of the name.
  2. The solid must contain the metal: an oxide, hydroxide or carbonate, or a metal that reacts safely with acid.
  3. Metals below hydrogen (e.g. copper) do not react with dilute hydrochloric or sulfuric acid; very reactive metals (e.g. sodium) react dangerously.

Example. (a) Suggest two substances that could be reacted together to make magnesium chloride.
(b) Explain why copper metal cannot be used to make copper(II) sulfate by reacting it with dilute sulfuric acid.

Show the model answer
(a) Magnesium oxide / magnesium carbonate / magnesium hydroxide / magnesium (1) and hydrochloric acid (1)
(b) Copper is less reactive than hydrogen, so it does not react with dilute sulfuric acid (1)

Shortcuts and memory tricks

  • Order of steps: We Eat Fresh Eggs, Cooked Daily (Warm, Excess, Filter, Evaporate, Crystallise, Dry).
  • Two filterings: the first removes excess solid (keep the filtrate); the second collects the crystals (keep what is in the filter paper).
  • Colour clue with copper(II) oxide: black solid left in a blue solution means the oxide is in excess.

Where marks are lost

  • Adding excess acid instead of excess solid: the salt would then be contaminated with acid.
  • Writing 'evaporate all the water' or 'boil until dry'.
  • Forgetting to filter off the excess solid before crystallising.
  • Missing the final drying step, so the salt is not dry.
  • Choosing a very reactive metal such as sodium, which reacts dangerously with acid.

Exam technique

  • In 6-mark method questions, write the steps in order and name the equipment: beaker, filter funnel and paper, evaporating basin, water bath.
  • Use the key words 'excess', 'filter', 'filtrate' and 'crystallise'.
  • A sensible volume of acid is fine to include, but the key steps and the reason for each matter most.
Required practical: Making salts (method, variables and exam tips)

Quick recall

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

A student made copper sulfate crystals from copper oxide and dilute sulfuric acid.
The steps of the method are shown in the wrong order:
  • A filter the mixture
  • B add copper oxide to warm acid until no more dissolves
  • C leave the solution to cool so that crystals form
  • D heat the filtrate to evaporate some of the water
Give the correct order of the steps.
B, A, D, C
A student made crystals of magnesium sulfate by reacting magnesium carbonate with dilute sulfuric acid. Write a word equation for the reaction.
magnesium carbonate + sulfuric acid → magnesium sulfate + water + carbon dioxide
Write a balanced symbol equation, including state symbols, for the reaction.
CuO(s) + H2SO4(aq) → CuSO4(aq) + H2O(l)
A student makes copper(II) sulfate solution by adding copper(II) oxide to warm dilute sulfuric acid until some of the black solid is left undissolved. The student filters the mixture, then heats the filtrate to evaporate some of the water.
The student then investigates how the place where the hot solution is left to cool affects the size of the crystals that form. The student pours 20 cm3 of the hot solution into each of three identical evaporating dishes. One dish is left in a refrigerator, one on the laboratory bench and one in a warm cupboard. After two days, the student measures the length of the largest crystal in each dish.
What is the dependent variable in this investigation?
The length of the largest crystal.

Sample questions

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

Question 1Easy4 marks
A student made copper sulfate crystals from copper oxide and dilute sulfuric acid.
The steps of the method are shown in the wrong order:
  • A filter the mixture
  • B add copper oxide to warm acid until no more dissolves
  • C leave the solution to cool so that crystals form
  • D heat the filtrate to evaporate some of the water
(a) Give the correct order of the steps.[2]
(b) Explain why the student added copper oxide until no more dissolved.[1]
(c) Name the apparatus used to remove the excess copper oxide.[1]
Show the answer and mark scheme
(a) Answer: B, A, D, C
  • B first and C last
  • A before D: B, A, D, C
(b)
  • to make sure all of the acid had reacted / was used up
(c)
  • filter funnel and filter paper
Question 2Medium6 marks
A student made crystals of magnesium sulfate by reacting magnesium carbonate with dilute sulfuric acid.
(a) Write a word equation for the reaction.[1]
(b) The student warmed the acid before adding the magnesium carbonate.
Give a reason why.[1]
(c) How would the student know when enough magnesium carbonate had been added?[2]
(d) The student evaporated the solution using a water bath instead of heating it strongly with a Bunsen burner.
Suggest why.[1]
(e) Suggest how the student could dry the crystals.[1]
Show the answer and mark scheme
(a) Answer: magnesium carbonate + sulfuric acid → magnesium sulfate + water + carbon dioxide
  • magnesium carbonate + sulfuric acid → magnesium sulfate + water + carbon dioxide
(b)
  • to increase the rate of reaction / so the solid reacts faster
(c)
  • no more fizzing / bubbles
  • some solid is left (undissolved) in the beaker
(d)
  • gentle heating stops the solution spitting / stops the salt decomposing / allows crystals to form (instead of a powder)
(e)
  • pat dry between pieces of filter paper / leave in a warm place / leave on a windowsill
Question 3Hard8 marks
Copper(II) sulfate is a soluble salt. It can be made by reacting insoluble copper(II) oxide with dilute sulfuric acid.
(a) Write a balanced symbol equation, including state symbols, for the reaction.[2]
(b) Describe a method to make pure, dry crystals of copper(II) sulfate from copper(II) oxide and dilute sulfuric acid.[6]
Show the answer and mark scheme
(a) Answer: CuO(s) + H2SO4(aq) → CuSO4(aq) + H2O(l)
  • CuO + H2SO4 → CuSO4 + H2O
  • state symbols (s), (aq), (aq), (l)
(b)
  • measure a known volume (e.g. 40 cm3) of dilute sulfuric acid into a beaker using a measuring cylinder
  • warm the acid gently using a Bunsen burner (do not boil)
  • add copper(II) oxide a spatula at a time, stirring
  • until copper(II) oxide is in excess / no more dissolves / black solid remains
  • filter to remove the excess copper(II) oxide and collect the blue filtrate
  • heat the filtrate in an evaporating basin using a water bath / electric heater until about half the water has evaporated / crystals start to form
  • leave the solution to cool so that crystals form
  • remove the crystals (by filtering) and pat them dry with filter paper / leave in a warm place

Marked with levels of response: the full level descriptors are in the app.

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