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Energy changes

AQA · GCSE · Chemistry · Topic 5

5.1

Energy changes: reactions that heat and reactions that cool

  • Exothermic 放热 reactions give energy out — the surroundings warm; endothermic 吸热 reactions take it in — they cool.
  • Reaction profile 反应能量图s show the activation energy 活化能 and the overall change; (HT) bond energies add up the same story.
  • Chemical cells and fuel cell 燃料电池s (chemistry only) turn reaction energy into electricity.
Vocabulary Train
English
exothermic/eɡzəˈðɜːmɪk/
endothermic/ˌendəʊˈθɜːmɪk/
activation energy/ˌæktɪˈveɪʃn ˈenədʒi/
reaction profile/rɪˈækʃn ˈprəʊfaɪl/
fuel cell/ˈfjuːəl sel/
5.1

Exothermic and endothermic reactions (4.5.1)

Syllabus

Exothermic and endothermic reactions (AQA 8462 statements 4.5.1.1-4.5.1.3).

  1. Define exothermic and endothermic from temperature change, with examples and uses.
  2. Draw and interpret reaction profiles with activation energy and overall energy change.
  3. (HT) Calculate overall energy change from bond energies and explain the difference between the two reaction types.

Source: Cambridge International syllabus

Energy is conserved: energy transferred to the surroundings comes off the products' store. An exothermic reaction transfers energy out — the surroundings' temperature rises (combustion, many oxidations, neutralisation; uses: hand warmers, self-heating cans). An endothermic reaction takes energy in — the temperature falls (thermal decomposition, citric acid + sodium hydrogencarbonate; uses: sports injury packs). Judge each from the temperature change of the surroundings; ΔH calculations are not required.

Reaction profiles for exothermic and endothermic reactions, with activation energy and overall energy change arrows.

Reaction profiles: reactions need colliding particles with at least the activation energy. Draw and read energy-level diagrams — relative energies of reactants and products, the activation energy arrow from the reactants' level, the overall energy change, curved line between. Exothermic: products below reactants; endothermic: products above.

(HT) Bond energies 键能: energy is supplied to break reactant bonds and released when product bonds form:

  • exothermic — forming releases more than breaking costs;
  • endothermic — breaking costs more than forming releases.

Overall change = Σ(bond energies broken) − Σ(bond energies formed). A catalyst lowers the activation energy — it does not change the overall energy change.

RP4: investigate the variables affecting temperature changes in reacting solutions (e.g. volume/concentration) — plan variables, measure ΔT, plot, conclude.

5.2

Chemical cells and fuel cells — chemistry only (4.5.2)

Syllabus

Chemical cells and fuel cells, chemistry only (AQA 8462 statement 4.5.2).

  1. Explain how cells produce electricity and what the voltage depends on.
  2. Compare non-rechargeable and rechargeable cells.
  3. Describe hydrogen fuel cells and (HT) their electrode half-equations, evaluating them against rechargeable cells.

Source: Cambridge International syllabus

Cells contain chemicals that react to produce electricity. The voltage depends on the type of electrode and electrolyte; a simple cell is two different metals in an electrolyte — the more reactive metal produces the higher voltage (it releases electrons more readily). Batteries = cells in series for greater voltage.

Non-rechargeable 可充电 (alkaline) cells stop when a reactant runs out; rechargeable cells reverse their reactions when an external current is supplied.

Fuel cells: fuel (e.g. hydrogen) + oxygen supplied continuously; the fuel is oxidised electrochemically to give a potential difference. Overall: hydrogen → water. Evaluate against rechargeable batteries: no pollutants at point of use, continuous refuel; but hydrogen storage, production and cost weigh against. (HT) half-equations for the hydrogen fuel cell:

  • negative electrode: 2 H₂ → 4 H⁺ + 4e⁻ (or 2 H₂ + 4 OH⁻ → 4 H₂O + 4e⁻)
  • positive electrode: O₂ + 4 H⁺ + 4e⁻ → 2 H₂O (or O₂ + 2 H₂O + 4e⁻ → 4 OH⁻)
Vocabulary Train
English
rechargeable/rɪˈtʃɑːdʒəbl/
5.2

Checklist before you call this topic done

  • Define exo/endo from temperature change, with two examples and two uses each.
  • Draw both reaction profiles with activation energy and overall change labelled.
  • (HT) Bond-energy sums both ways round; catalyst effect on the profile.
  • (Chem) Cell voltage factors; rechargeable vs non-rechargeable; fuel cell equations and evaluation.
Vocabulary Train
English
bond energy/bɒnd ˈenədʒi/

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