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BIOD 101 – MODULE 3 PRACTICE EXAM 2025

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BIOD 101 – MODULE 3 PRACTICE EXAM 2025

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BIOD 101 – MODULE 3 PRACTICE EXAM
Portage Learning – Foundations of Biology I (2025 Edition)

Metabolic Pathways, Cellular Respiration, Glycolysis, CAC, ETC, Fermentation

Practice Set Overview

• Total Questions: 100
• Includes:
o True/False
o Fill-in-the-Blank
o Short Answer
o Definitions

Topics Covered

• Chemical reactions: Redox, Hydrolysis, Dehydration, Condensation
• Metabolic classifications: Catabolism vs. Anabolism
• Glycolysis phases: Investment and Payoff
• Energy carriers: ATP, NADH, FADH₂
• Citric Acid Cycle (Krebs Cycle): Steps and intermediates
• Electron Transport Chain (ETC): Complexes I–IV, Ubiquinone, Cytochrome C
• ATP Synthase and Oxidative Phosphorylation
• Anaerobic Respiration and Fermentation (Alcohol and Lactic Acid)
• Enzymes: Hexokinase, Phosphofructokinase, Aldolase, Pyruvate kinase
• Energy yield calculations: Aerobic vs. Anaerobic pathways




Who Should Use This

• Portage Learning students preparing for Module 3 exams
• Biology students seeking to master cellular respiration and energy pathways
• Those reviewing biochemical reactions and ATP production mechanisms



Compiled: 2025
Course: BIOD 101 – Foundations of Biology I
Institution: Portage Learning
Exam Style: Verified Q&A structured like real Portage module assessments

, PORTAGE LEARNING BIOD 101 – MODULE 3

1. True or False

Statement: ATP synthase is directly powered by the transfer of electrons.

Answer: False
ATP synthase is powered by the proton gradient across the inner mitochondrial membrane.



2. Fill in the Blank

Question: In glycolysis, the molecule glucose is broken down into two molecules of ________.

Answer: Pyruvate



3. Short Answer

Question: What is the net ATP yield from glycolysis per glucose molecule?

Answer: 2 ATP (4 ATP produced - 2 ATP used)



4. Definition

Term: Oxidative Phosphorylation
Definition: The process of ATP formation driven by the transfer of electrons through the
electron transport chain to oxygen.



5. True or False

Statement: FADH₂ donates electrons to Complex I in the electron transport chain.

Answer: False
FADH₂ donates electrons to Complex II.

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