unit 4 populations & environment atp & respiration ... · pdf file(d) compare the fate...
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Unit 4
Populations & Environment
ATP & Respiration
Practice Exam Questions
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1. Fig. 1 shows the link reaction and the Krebs cycle.
Fig. 1 (a) (i) State the precise location of the reactions shown in Fig. 1.
………………………………………………………………………………………………………… [1] (ii) State the metabolic pathway that has pyruvate as an end product.
………………………………………………………………………………………………………… [1] (b) Label on Fig. 1, the stages where, (i) decarboxylation reactions occur; label these with the letter C. [2] (ii) dehydrogenation reactions occur; label these with the letter H. [3] (c) Describe the role of NAD in respiration.
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(d)
Compare the fate of pyruvate in anaerobic respiration in yeast and mammalian cells.
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(e) Explain why, in the absence of oxygen, the electron transfer chain in the mitochondria
does not operate.
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17.
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18.
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Answers and markscheme
1 (a) (i) matrix of the mitochondrion; 1 (ii) glycolysis; 1 (b) (i) C between
6C and 5C; 5C and 4C; between pyruvate and acetyl CoA; 2 max
(ii) H at:
NAD NADH in link reaction; 3 places where NAD NADH in Krebs cycle; FAD FADH in Krebs cycle; 3
(c) reduced in, glycolysis / link reaction / Krebs;
transports electrons / hydrogen ions; to inner membrane of mitochondrion; oxidised; releases electrons and hydrogen ions; used in ETC to form gradient of hydrogen ions; used to drive synthesis of ATP; 3
(d) mammals
pyruvate is, reduced / converted, to lactate; NAD red is oxidised; one step reaction / catalysed by lactate dehydrogenase; yeast pyruvate is decarboxylated; CO2 is produced; ethanal; reduced / converted, to ethanol; 4 max
(e) oxygen is needed for the final step;
final, hydrogen / electron, acceptor; without it NAD red is not oxidised; 3
[Total: 17]
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6.
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7
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12.
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13.
14
15
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16
17
18
(ii) 30 [however derived] = 2 marks [Note; question concerns ATP made in mitochondria only]
If incorrect figure given then only 1 max possible – check working
for any two correct intermediate figures in correct context, e.g.:
2.5 x 10 [from NADH] AND 1.5 x 2 [from FADH] = 1 mark
OR
2 x 2.5 (from glycolysis NADH) AND 2ATP (from Krebs cycle) = 1 mark 2
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