Lesson 5.2.2b
5.2.2b Oxidative phosphorylation and anaerobic respiration Quiz: OCR Biology, Unit 6
20 questions
In partnership with Revision Ninja
Lesson 5.2.2b, Oxidative phosphorylation and anaerobic respiration: 20 multiple choice questions for the OCR Biology (H020), Unit 6: Energy for biological processes, written with Revision Ninja.
Host it live on the board and students join with a game code on their own devices, or revise alone with Free Play. The answers are revealed in the game.
The 20 questions
-
What is the final electron acceptor in oxidative phosphorylation?
- NADP
- Carbon dioxide
- Pyruvate
- Oxygen
-
Where in a mitochondrion is the electron transport chain located?
- Inner membrane
- Matrix
- Intermembrane space
- Outer membrane
-
Which enzyme uses the flow of protons to make ATP from ADP and inorganic phosphate?
- Pyruvate decarboxylase
- Lactate dehydrogenase
- RuBisCO
- ATP synthase
-
In mammalian muscle during anaerobic respiration, what is pyruvate converted into?
- Lactate
- Glucose
- Ethanol
- Acetyl CoA
-
What are the end products of anaerobic respiration in yeast?
- Lactate and CO2
- Ethanol and CO2
- Lactate and ATP
- Pyruvate and water
-
Into which compartment are protons pumped during oxidative phosphorylation?
- Intermembrane space
- Outer membrane
- Mitochondrial matrix
- Cytoplasm
-
What is the main benefit of anaerobic respiration when oxygen is absent?
- Glucose synthesis
- Carbon dioxide uptake
- Continued ATP production
- Higher ATP yield
-
A mammalian cell respires one glucose molecule anaerobically. What is the net yield of ATP?
- 4
- 36
- 2
- 30
-
Why must reduced NAD be reoxidised during anaerobic respiration?
- To hydrolyse ATP
- To continue glycolysis
- To enter mitochondria
- To produce water
-
What happens to the ATP yield per glucose when yeast switches to anaerobic respiration?
- It increases
- It decreases
- It remains constant
- It doubles
-
Aerobic respiration of one glucose gives about 30 ATP, while anaerobic respiration gives 2. By roughly what factor is the aerobic yield greater?
- About 2 times
- About 5 times
- About 30 times
- About 15 times
-
Which pathway does not occur during mammalian anaerobic respiration?
- Lactate fermentation
- Glycolysis
- Krebs cycle
- Glucose phosphorylation
-
What is the ultimate role of oxygen in oxidative phosphorylation?
- Proton pump donor
- ATP synthase activator
- Terminal electron acceptor
- Primary carbon acceptor
-
What is the main structural function of cristae in mitochondria?
- Increase surface area
- Store glucose
- Lower matrix pH
- Synthesise pyruvate
-
What directly drives ATP synthesis by ATP synthase in mitochondria?
- Oxygen consumption
- Proton flow
- Electron transfer
- Pyruvate oxidation
-
Why does anaerobic respiration produce much less ATP per glucose molecule than aerobic respiration?
- Oxidative phosphorylation operates
- Krebs cycle continues
- Chemiosmosis occurs
- Only glycolysis occurs
-
A mammalian muscle cell uses only anaerobic respiration and consumes 0.5 mol of glucose. How many moles of ATP are made, given a net yield of 2 ATP per glucose?
- 4
- 0.5
- 2
- 1
-
What is the main advantage of anaerobic respiration during intense exertion such as sprinting?
- Long-lasting energy
- High ATP yield
- Rapid ATP production
- Lactate breakdown
-
What is maintained across the inner mitochondrial membrane to drive ATP synthesis?
- Proton gradient
- Pyruvate gradient
- Electron gradient
- Oxygen gradient
-
In mammalian anaerobic respiration, what is pyruvate reduced to in order to regenerate NAD?
- Ethanol
- Lactate
- Acetyl CoA
- Oxaloacetate
Related quizzes
- Chloroplasts and photosynthetic pigments Quiz · 5.2.1a · 20 questions
- Light-dependent and light-independent stages Quiz · 5.2.1b · 20 questions
- Glycolysis and the link reaction Quiz · 5.2.2a · 20 questions
- Energy values and the respiratory quotient Quiz · 5.2.2c · 20 questions
- Microscopy and observing cells Quiz · 2.1.1a · 20 questions
- Specialised exchange surfaces and mammalian gas exchange Quiz · 3.1.1a · 20 questions
- Pathogens and plant defences Quiz · 4.1.1a · 20 questions
- Measuring biodiversity and sampling Quiz · 4.2.1a · 20 questions
- Communication systems and homeostatic control Quiz · 5.1.1a · 20 questions
- Gene mutations Quiz · 6.1.1a · 20 questions