IB Biology HL Cellular Respiration Paper 1 & 2 ~12 min read

Cell Respiration

Glucose holds a lot of energy. Release it all at once and you get a fire. Cells release it in a long series of small steps instead, and capture as much of it as they can in ATP.

📚 What you need to know

What respiration is for

Organic food molecules contain a great deal of chemical energy. The cell’s problem is not getting at it — burning glucose would do that — but getting at it safely and in useful amounts.

So enzymes control the release through a pathway of small reactions, and the energy is used to attach a phosphate group to ADP, making ATP. The energy in that ATP then goes to:

Definition Cell respiration is the controlled release of energy from organic compounds in cells to form ATP.
Respiration and breathing are not the same thing and examiners love the difference. Respiration is a chemical process inside cells. Gas exchange is the physical movement of oxygen and carbon dioxide at the alveoli. You can hold your breath; you cannot hold your respiration.

Choosing a fuel

Glucose is the main respiratory substrate, but it is not the only one.

The four stages, and where they happen

Aerobic respiration is one pathway split across two compartments. It helps enormously to hold this map in your head before you meet the details.

The road map of aerobic respiration CYTOPLASM MITOCHONDRION 1. GLYCOLYSIS glucose to pyruvate 2 ATP + 2 NADH no oxygen needed here, so this stage runs either way pyruvate 2. LINK to acetyl CoA 3. KREBS the cycle 4. OXIDATIVE PHOSPHOR- YLATION matrix matrix inner membrane the reduced NAD and FAD made in stages 1 to 3 are all cashed in during stage 4 this is where about 32 of the 36 ATP are madeOnly stage 1 happens outside the mitochondrion — which is why it still runs without oxygen
Keep coming back to this map. Every later page in this topic is a zoomed-in view of one of these four boxes.

Aerobic respiration

Aerobic respiration glucose + oxygen → carbon dioxide + water  (+ energy transferred to ATP)

Anaerobic respiration

Sometimes oxygen is not available. That happens in two quite different situations:

Without oxygen, glucose is only partially oxidised, so only a small part of its chemical energy is transferred to ATP. The only ATP-producing stage that continues is the first one, giving about 2 ATP per glucose. The roughly 36 ATP that oxygen would have allowed are simply not made.

Two ATP is not much, but it is far better than none, and it gives a short burst of energy when oxygen runs out. Different organisms handle it differently: plants and yeast produce ethanol and carbon dioxide, while animals produce lactate.

Same starting fuel, two very different outcomes AEROBIC ANAEROBIC glucose + oxygen carbon dioxide + water 36 ATP per glucose glucose no oxygen animals: lactate yeast and plants: ethanol + carbon dioxide 2 ATP per glucoseAnaerobic respiration is not a different fuel — it is the same fuel used badly The glucose is only partly oxidised, so most of its energy is left locked in the product
Look at where the energy goes: lactate and ethanol still contain most of the original energy of the glucose. That is why the yield is so poor.

Comparing the two

FeatureAerobic respirationAnaerobic respiration
Oxidation of glucoseCompleteIncomplete
Oxygen requiredYesNo
Relative ATP yieldHigh, about 36 moleculesLow, 2 molecules
ProductsCarbon dioxide and waterLactate, or ethanol and carbon dioxide
Where it happensCytoplasm and mitochondriaCytoplasm only
Is ATP produced?YesYes — just far less of it
Where the 36 comes from. Different textbooks quote anything from 30 to 38 ATP per glucose, because the exact figure depends on assumptions about how efficiently the cell shuttles and uses its proton gradient. Use the figure your course gives, and always show your working so the examiner can follow the reasoning rather than just the number.

Worked examples

WE 1

Explain the need for a pathway

Explain why the energy in glucose is released in a series of small steps rather than all at once. (3 marks)

Point 1: the danger Organic molecules hold a lot of chemical energy, and releasing it in one uncontrolled step would damage cells and cause tissue death. Point 2: the mechanism Enzymes control the release through a pathway, and each small step is catalysed by its own enzyme. Point 3: the benefit Small releases can be captured efficiently as ATP rather than being lost as heat, and the cell can regulate the pathway step by step. Controlled steps mean usable energy instead of destructive heat “it would burn the cell” is the right idea but say damage cells and tissues for the mark
WE 2

Compare the ATP yields

A muscle cell respires 10 molecules of glucose aerobically and 10 anaerobically. Calculate the difference in ATP produced and explain the cause. (3 marks)

Step 1: aerobic 10 × 36 = 360 ATP Step 2: anaerobic 10 × 2 = 20 ATP, so the difference is 360 − 20 = 340 ATP. Step 3: the explanation Without oxygen glucose is only partially oxidised, so only glycolysis produces ATP; the link reaction, Krebs cycle and oxidative phosphorylation cannot run. 340 ATP fewer, because the glucose is never fully oxidised name the stages that stop — it turns a calculation mark into an explanation mark

💡 Exam tips

⚠ Common mistakes

Up next: Cell Respiration (Skills). Before pulling the pathway apart, the next page covers how respiration rate is actually measured in a lab, including the respirometer calculation.

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