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CHEM 210 Module 8 Exam | Biochemistry | Portage Learning | Q & A | 2026 Edition

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Prepare for CHEM 210 – Biochemistry, Module 8 with a focused practice resource designed to reinforce essential biochemistry concepts through structured question-based review. The material is intended for Portage Learning students seeking additional study and self-assessment alongside their official course materials. The practice material emphasizes biochemical structures, molecular interactions, metabolic pathways, enzymes, energy transformations, and the relationship between biochemical processes and human physiology, as applicable to the Module 8 curriculum. Questions are designed to encourage conceptual understanding, interpretation, and application rather than simple memorization. The resource includes practice questions, proposed answers, and detailed rationales explaining the relevant biochemical principles. It can be used for independent review, knowledge checks, and targeted preparation before completing the official Module 8 assessment. Important: This is an independent study resource and not an official Portage Learning examination, question bank, or source of actual Module 8 assessment questions. It does not contain leaked, confidential, or guaranteed examination content. “Q & A” and “verified answers” refer to study answers intended to be checked against appropriate biochemistry references and course objectives.

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CHEM 210 Module 8 Exam | Biochemistry | Portage Learning | Q & A | 2026
Edition


SECTION 1: ELECTRON TRANSPORT CHAIN (ETC) – COMPLEXES & ELECTRON
FLOW (Questions 1–40)


1. How many complexes are associated with the electron transport chain
(ETC)? - A) Three - B) Four - C) Five - D) Six
Answer C: ) Five
Rationale: The ETC has five complexes: Complex I (NADH dehydrogenase),
Complex II (succinate dehydrogenase), Complex III (cytochrome bc₁), Complex
IV (cytochrome c oxidase), and Complex V (ATP synthase).




2. True or False: There are six complexes associated with the ETC. - A) False -
B) True
Answer A: ) False

,Rationale: The ETC has five complexes, not six. Complexes I–IV transport
electrons, and Complex V (ATP synthase) produces ATP.




3. Which complex of the ETC accepts electrons from NADH? - A) Complex I -
B) Complex II - C) Complex III - D) Complex IV
Answer A: ) Complex I
Rationale: Complex I (NADH dehydrogenase) accepts electrons from NADH
and transfers them to ubiquinone (coenzyme Q).




4. Which complex of the ETC accepts electrons from FADH₂? - A) Complex I -
B) Complex II - C) Complex III - D) Complex IV
Answer B: ) Complex II
Rationale: Complex II (succinate dehydrogenase) accepts electrons from
FADH₂ and transfers them to ubiquinone. FADH₂ enters the ETC at Complex II,
bypassing Complex I.




5. FADH₂ donates electrons and H⁺ to complex ______. - A) I - B) II - C) III - D)
IV
Answer B: ) II

,Rationale: FADH₂ enters the ETC at Complex II (succinate dehydrogenase),
which is also part of the citric acid cycle.




6. Which complex of the ETC transfers electrons from ubiquinol to
cytochrome c? - A) Complex I - B) Complex II - C) Complex III - D) Complex IV
Answer C: ) Complex III
Rationale: Complex III (cytochrome bc₁) transfers electrons from ubiquinol
(QH₂) to cytochrome c.




7. Which complex of the ETC transfers electrons from cytochrome c to
molecular oxygen (O₂)? - A) Complex I - B) Complex II - C) Complex III - D)
Complex IV
Answer D: ) Complex IV
Rationale: Complex IV (cytochrome c oxidase) transfers electrons from
cytochrome c to molecular oxygen, reducing O₂ to H₂O.




8. What is the final electron acceptor in the electron transport chain? - A)
NAD⁺ - B) FAD - C) Oxygen (O₂) - D) Cytochrome c
Answer C: ) Oxygen (O₂)

, Rationale: Molecular oxygen is the final electron acceptor in the ETC,
combining with electrons and protons to form water.




9. What is the role of ubiquinone (coenzyme Q) in the ETC? - A) It accepts
electrons from cytochrome c - B) It serves as a mobile electron carrier
between Complexes I/II and III - C) It pumps protons across the membrane -
D) It reduces oxygen to water
Answer B: ) It serves as a mobile electron carrier between Complexes I/II and
III
Rationale: Ubiquinone (coenzyme Q) is a lipid-soluble mobile electron carrier
that shuttles electrons from Complexes I and II to Complex III.




10. What is the role of cytochrome c in the ETC? - A) It accepts electrons
from NADH - B) It transfers electrons from Complex III to Complex IV - C) It
serves as a mobile electron carrier between Complexes III and IV - D) It
reduces oxygen to water
Answer C: ) It serves as a mobile electron carrier between Complexes III and
IV
Rationale: Cytochrome c is a water-soluble mobile electron carrier that
transfers electrons from Complex III to Complex IV.

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