Every card in Chemical reactions, Year 10: electrolysis of solutions and half equations
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- Sodium chloride solution is electrolysed using inert electrodes. Which gas forms at the negative electrode? (one word)
Hydrogen
HintSodium is far too reactive to be released from water, so something from the water takes its place.
WhyThe solution contains positive ions from the water as well as sodium ions. Because sodium is the more reactive, it is the ions from the water that are discharged, and bubbles of gas appear at the electrode.
- Copper sulfate solution is electrolysed using inert electrodes. What forms at the negative electrode?
Copper, as a pink-brown coating
HintThis metal sits below hydrogen in the reactivity series, so it is discharged in preference.
WhyBoth metal ions and hydrogen ions are attracted to the negative electrode. The metal here is less reactive than hydrogen, so its ions are the ones discharged and the electrode becomes plated.
- Sodium sulfate solution is electrolysed using inert electrodes. Which gas forms at the positive electrode?
Oxygen
HintNo halide ions are present, so the water supplies the ion that is discharged.
WhyAt the positive electrode a halogen forms only if the solution contains halide ions. Otherwise hydroxide ions from the water are discharged and a colourless gas is given off; the sulfate ions stay in solution.
- A solution of an ionic compound contains hydrogen ions and hydroxide ions as well as the ions of the compound. Where do these extra ions come from?
From water molecules breaking down
HintLook at what the compound was dissolved in.
WhyA tiny fraction of the molecules of the solvent split into hydrogen ions and hydroxide ions. In electrolysis these compete with the ions of the dissolved compound, which is why hydrogen or oxygen is often produced instead of the expected element.
- Copper chloride solution is electrolysed. At the positive electrode a gas forms that bleaches damp litmus paper. Which gas is it? (one word)
Chlorine
HintThe solution contains halide ions, and this is the halogen they belong to.
WhyWhen halide ions are present they are discharged at the positive electrode, giving the halogen instead of oxygen. This one is recognised because it turns damp litmus paper white.
- In the required practical on electrolysis, several different salt solutions are tested in turn, each with the same type of inert electrodes and the same power supply setting. Why are these kept the same?
So that the solution is the only thing that differs
HintThink about what makes a comparison between the results fair.
WhyThe investigation tests a hypothesis about how the dissolved compound affects what forms at each electrode. If the electrodes or the voltage also changed, a different product could not be put down to the dissolved compound alone.
- During electrolysis, at which electrode does oxidation take place: the anode or the cathode? (one word)
Anode
HintOxidation is loss of electrons; ask which electrode the negative ions travel to in order to give theirs up.
WhyNegative ions move to the positive electrode and lose electrons there, which is oxidation. At the negative electrode positive ions gain electrons, which is reduction.
- Write the half equation for hydrogen ions being discharged as hydrogen gas at the negative electrode.
2H⁺ + 2e⁻ → H2
HintThe gas is made of molecules holding two atoms, so start by taking two ions.
WhyEach hydrogen ion needs one electron to become a hydrogen atom, and the atoms pair up as H2. Two ions therefore take two electrons. Because electrons are gained, this is a reduction.
- Complete the half equation for chloride ions being discharged at the positive electrode: 2Cl⁻ → Cl2 + ____e⁻.
2
HintEach ion carries one extra electron and has to give it up.
WhyTwo chloride ions each lose one electron, and the two chlorine atoms join as a Cl2 molecule. The charges balance: two negative charges on the left, two electrons on the right.
- Write the half equation for hydroxide ions being discharged at the positive electrode to give oxygen.
4OH⁻ → O2 + 2H2O + 4e⁻
HintBesides the gas, the ions leave behind a familiar liquid; it takes four ions to make one molecule of the gas.
WhyFour hydroxide ions give up four electrons and rearrange into one oxygen molecule and two water molecules. It can also be written 4OH⁻ − 4e⁻ → O2 + 2H2O. Because electrons are lost, this is an oxidation.
- At the negative electrode in aluminium extraction, each aluminium ion, Al³⁺, becomes an aluminium atom. How many electrons does each ion gain? (number only)
3
HintThe ion has to end up with no overall charge.
WhyAn Al³⁺ ion has three more protons than electrons, so it needs three electrons to become a neutral atom: Al³⁺ + 3e⁻ → Al. Gaining electrons means the aluminium ions are reduced.
1★ GCSE-CHEM-REA-0050
2★ GCSE-CHEM-REA-0051
3★ GCSE-CHEM-REA-0052
4★ GCSE-CHEM-REA-0053
5★ GCSE-CHEM-REA-0054
6★ GCSE-CHEM-REA-0055
7★ GCSE-CHEM-REA-0056
8★ GCSE-CHEM-REA-0057
9★ GCSE-CHEM-REA-0058
10★ GCSE-CHEM-REA-0059
11★ GCSE-CHEM-REA-0060
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