Electron Transport Chain
ATP Synthase
ATP & Energy
Metabolic Pathways
Big Picture
100

Where does the electron transport chain occur in the mitochondria?

Inner mitochondrial membrane.

100

What enzyme makes ATP during cellular respiration?

ATP synthase.

100

What is ATP used for?

The main energy source for cellular activities.

100

Besides glucose, what other molecules can cells use for energy?

Fats and proteins.

100

What is the overall purpose of cellular respiration?

To convert energy stored in food into ATP.

200

What happens as electrons move through the electron transport chain?

Energy is released and used to help produce ATP.

200

Where is ATP synthase located?

Inner mitochondrial membrane.

200

Approximately how many ATP molecules can be produced from one glucose molecule?

About 36–38 ATP.

200

Why can fats produce more ATP than glucose?

Fatty acids have longer carbon chains, providing more energy.

200

What molecule stores usable energy for the cell?

ATP.

300

What type of electrons enter the electron transport chain?

High-energy electrons.

300

What gradient powers ATP synthase?

A hydrogen ion (H⁺) gradient.

300

What percentage of glucose energy is captured as ATP?

About 40%.

300

What happens to extra food energy?

It can be converted into fat for storage.

300

What role does oxygen play in cellular respiration?

It acts as the final electron acceptor in the electron transport chain.

400

What is the final electron acceptor in the electron transport chain?

Oxygen.

400

Why are H⁺ ions pumped into the intermembrane space?

To create a concentration gradient that stores energy.

400

What happens to the remaining energy from glucose?

It is released as heat

400

Why can proteins be used in metabolism?

They can be broken down into molecules that enter energy-producing pathways.

400

Why is the electron transport chain important?

It creates the H⁺ gradient needed for ATP production.

500

What is produced when oxygen accepts electrons?

Water (H₂O).

500

Explain how ATP synthase produces ATP.

H⁺ ions flow through ATP synthase, and the energy from that movement is used to combine ADP and phosphate to make ATP.

500

Why might different cells produce different amounts of ATP?

Different cells have different efficiencies and conditions, causing some to produce less than the maximum.

500

Why might cells use different energy sources?

Cells use available nutrients to produce energy and materials needed for survival.

500

Explain the pathway:
Glucose → Electron Transport Chain → ATP

Energy from glucose is transferred through electron carriers, creating an H⁺ gradient that powers ATP synthase to produce ATP.