Krebs cycle: acetyl-CoA oxidized producing 2 CO₂, 3 NADH, 1 FADH₂, 1 ATP per turn (mitochondrial matrix).
Calvin cycle (stroma): RuBisCO fixes CO₂ to RuBP (5C) → 2 GP (3C) → reduced to 2 TP (3C) using ATP and NADPH.
💡 Worked Example Question
Exam-Style Question
Question:
Explain why oxygen is essential for aerobic ATP production.
Model Solution & Mark Scheme:
Oxygen acts as the terminal electron acceptor at complex IV of the electron transport chain. It combines with electrons and protons to form H₂O (½O₂ + 2H⁺ + 2e⁻ → H₂O), maintaining electron flow and proton gradient across the inner mitochondrial membrane.
❓ Practice Questions & Mark Schemes
Q1: What happens to the Calvin cycle in prolonged darkness?
Show Model Answer
Answer: Without light-dependent ATP and NADPH, GP cannot be reduced to TP. GP accumulates while RuBP and TP levels drop, halting glucose synthesis.
Q2: Calculate the respiratory quotient (RQ) for tripalmitin C₅₁H₉₈O₆ + 145/2 O₂ → 51 CO₂ + 49 H₂O.