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Cell Energy VIII Lowersixth Science Biology
 

Cell Energy VIII Lowersixth Science BiologyOnline version

Test your knowledge on plant photosynthesis.

by YAKILI LMS
1

C3 plants fix carbon dioxide via the Calvin cycle.

2

Internal inhibitors enhance photosynthesis efficiency at high light.

3

CO2 concentration can limit photosynthesis at high light.

4

All oxygen produced is used in the same chloroplast.

5

Internal inhibitors always increase photosynthetic rate.

6

Photosynthesis involves light-dependent reactions and the Calvin cycle.

7

Chlorophyll concentration ceases to affect light capture when leaves age.

8

C4 plants lack any form of leaf anatomy specialized for photosynthesis.

9

The primary source of energy for photosynthesis is ultraviolet light.

10

Chlorophyll concentration has no effect on photosynthesis rate.

11

External factors include light intensity, CO2, and temperature affecting rate.

12

The rate of photosynthesis is completely independent of leaf anatomy.

13

Photosynthesis occurs without any involvement of water.

14

C4 plants show Kranz anatomy in leaves.

15

Photosynthesis does not require light energy to occur.

16

Chloroplasts are the sites of photosynthetic light reactions.

17

Leaf anatomy has no role in photosynthetic efficiency.

18

C3 plants perform the Calvin cycle in the mitochondria.

19

Temperature has no effect on the rate of photosynthesis.

20

Chloroplasts are located in the cell wall.

21

CAM plants assimilate CO2 at night and fix it during the day.

22

CO2 concentration never limits photosynthesis under high light.

23

Oxygen produced during photosynthesis is consumed immediately in the same cell.

24

CAM plants open stomata during the hottest part of the day.

25

Chlorophyll concentration influences the rate of light capture.

26

The compensation point is reached only at night.

27

All photosynthesis occurs only in the morning when light is present.

28

Internal inhibitors can reduce photosynthesis efficiency.

29

CAM plants fix carbon dioxide exclusively during the day.

30

The compensation point is where photosynthesis equals respiration.

31

CAM plants open stomata at night to reduce water loss.

32

Rubisco can catalyze oxygenation at high O2 levels.

33

The Calvin cycle occurs in the mitochondria of plant cells.

34

The light-dependent reactions do not generate any ATP.

35

Leaf age affects photosynthetic capacity.

36

The rate of photosynthesis increases with light intensity to a point.

37

Leaf thickness does not influence photosynthetic capacity.

38

Photosynthesis and respiration occur in entirely different organisms.

39

C3 and C4 pathways are identical in how they fix carbon.

40

C3 photosynthesis is more common in cool and moist environments.

41

Rubisco is the primary enzyme for photosystem II photolysis.

42

The temperature optimum for many temperate crops is around 25-30°C.

43

Different plant species do not exhibit any variation in photosynthetic pathways.

44

Increasing light always decreases the rate of photosynthesis.

45

All plants photosynthesize equally well at 50°C.

46

CO2 transfer to the chloroplast is independent of stomatal conductance.

47

The Calvin cycle occurs in the cytoplasm.

48

Photosynthesis mainly uses oxygen as a raw material.

49

CAM plants open their stomata at night to fix carbon dioxide and conserve water.

50

C4 plants always have higher photorespiration than C3 plants.

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