12.1 Respiration
- Syllabus
- 0610–2026–2027
- Topic
- 12.1
- Level
- —
Respiration releases energy that cells transfer to processes that cannot proceed by passive movement alone.
| Required use | What the energy enables |
|---|---|
| muscle contraction | movement, posture, heartbeat and ventilation |
| protein synthesis | joining amino acids to make proteins |
| cell division | copying and separating cell contents to form new cells |
| active transport | moving substances against a concentration gradient |
| growth | making new cell material and increasing cell number or size |
| passage of nerve impulses | maintaining ion gradients and transmitting signals |
| constant body temperature | replacing heat lost to the surroundings |
Diffusion, osmosis and evaporation are passive processes; they do not directly use energy released by respiration.
Yeast respiration is enzyme-controlled, so its rate changes with temperature.
| Stage | Fair-test decision |
|---|---|
| prepare | use equal volumes and concentrations of yeast and glucose solution |
| vary temperature | place identical mixtures in water baths at a suitable range of temperatures and allow them to equilibrate |
| measure rate | collect carbon dioxide in a gas syringe, or count bubbles over the same timed interval |
| control | keep pH, yeast amount, glucose concentration, total volume and measurement time constant |
| reliability | repeat each temperature and calculate a mean rate |
| Temperature range | Expected respiration rate | Explanation |
|---|---|---|
| low to warmer | increases | particles have more kinetic energy, causing more successful enzyme–substrate collisions |
| optimum | highest | respiratory enzymes work at their fastest rate |
| above optimum | decreases | enzymes denature and active sites lose their complementary shape |
Temperature is the independent variable and carbon-dioxide production per unit time is the rate measure; comparing only final gas volume after unequal times is not a fair rate comparison.