Class 11 Biology MCQs | Chapter 14: Respiration In Plants – Part 3
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Class 11 Biology MCQs | Chapter 14: Respiration in Plants – Part 3

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201. Which statement best explains why the respiratory balance sheet of aerobic respiration is considered theoretical?
ⓐ. Because glucose is never broken down in living cells
ⓑ. Because all NADH molecules always produce exactly the same ATP in every situation
ⓒ. Because intermediate products may enter other pathways and the actual ATP yield may differ from the ideal calculation
ⓓ. Because oxygen is not really used in terminal oxidation
202. Which statement correctly represents the classical ATP distribution from one glucose molecule in aerobic respiration?
ⓐ. 4 ATP from glycolysis, 4 ATP from link reaction, 30 ATP from Krebs cycle
ⓑ. 2 ATP from glycolysis, 2 ATP from Krebs cycle, and the remaining major ATP through electron transport
ⓒ. 10 ATP from glycolysis, 10 ATP from Krebs cycle, and 18 ATP from fermentation
ⓓ. 2 ATP from glycolysis, 2 ATP from fermentation, and 34 ATP from photosynthesis
203. Which overall equation best represents the complete aerobic oxidation of one molecule of glucose in the classical respiratory balance sheet?
ⓐ. $C_6H_{12}O_6 + 6O_2 \rightarrow 6CO_2 + 6H_2O + \text{energy}$
ⓑ. $C_6H_{12}O_6 + 3O_2 \rightarrow 3CO_2 + 3H_2O + \text{energy}$
ⓒ. $C_6H_{12}O_6 + 6CO_2 \rightarrow 6O_2 + 6H_2O + \text{energy}$
ⓓ. $C_6H_{12}O_6 + 6H_2O \rightarrow 6CO_2 + 6O_2 + \text{energy}$
204. How many molecules of carbon dioxide are released in total during the complete aerobic respiration of one glucose molecule?
ⓐ. 2
ⓑ. 4
ⓒ. 6
ⓓ. 8
205. Which statement correctly distributes the six carbon dioxide molecules produced from one glucose during aerobic respiration?
ⓐ. 2 in glycolysis and 4 in the electron transport system
ⓑ. 2 in the link reaction and 4 in the Krebs cycle
ⓒ. 6 in glycolysis and none in the Krebs cycle
ⓓ. 4 in the link reaction and 2 in oxidative phosphorylation
206. In the classical respiratory balance sheet, how many ATP molecules are attributed to oxidative phosphorylation from one glucose molecule?
ⓐ. 4
ⓑ. 30
ⓒ. 34
ⓓ. 38
207. A student says, “All 38 ATP of aerobic respiration are formed directly in metabolic reactions before the electron transport system begins.” Which correction is most accurate?
ⓐ. All ATP are formed directly only in glycolysis and none later
ⓑ. Only 4 ATP are formed directly, while most ATP are produced indirectly through oxidative phosphorylation
ⓒ. No ATP are formed before oxygen accepts electrons in the chain
ⓓ. All 38 ATP are formed in the Krebs cycle after acetyl-CoA enters
208. Assertion (A): The respiratory balance sheet is useful for understanding the contribution of each stage of aerobic respiration. Reason (R): It summarizes the inputs, outputs, and ATP equivalents of the major respiratory stages in one account.
ⓐ. Both A and R are true, and R is the correct explanation of A.
ⓑ. Both A and R are true, but R is not the correct explanation of A.
ⓒ. A is true, but R is false.
ⓓ. A is false, but R is true.
209. Which pair correctly represents the reduced coenzyme contribution in the classical balance sheet of one glucose molecule?
ⓐ. $10\ \text{NADH} \rightarrow 30\ \text{ATP}$ and $2\ \text{FADH}_2 \rightarrow 4\ \text{ATP}$
ⓑ. $10\ \text{NADH} \rightarrow 20\ \text{ATP}$ and $2\ \text{FADH}_2 \rightarrow 6\ \text{ATP}$
ⓒ. $6\ \text{NADH} \rightarrow 30\ \text{ATP}$ and $4\ \text{FADH}_2 \rightarrow 8\ \text{ATP}$
ⓓ. $2\ \text{NADH} \rightarrow 4\ \text{ATP}$ and $10\ \text{FADH}_2 \rightarrow 30\ \text{ATP}$
210. Which statement best explains why direct ATP formation contributes only a small part of the total respiratory yield?
ⓐ. Because direct ATP is formed only when oxygen is completely absent
ⓑ. Because most energy is first trapped in NADH and $FADH_2$ and later converted to ATP through the electron transport system
ⓒ. Because glycolysis and the Krebs cycle do not release any usable energy at all
ⓓ. Because ATP can be formed directly only from carbon dioxide and water
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