Light Reaction
BIOXI13: PHOTOSYNTHESIS IN HIGHER PLANTS

337225 The given diagram shows the Chemiosmotic hypothesis of ATP synthesis. Identify A-C in given diagram.
supporting img

1 A-Lumen of thylakoid, B-\({F_0}\), C-\({F_1}\)
2 A - \({F_0}\) , B - \({F_1}\), C - Lumen of thylakoid
3 A - Lumen of mitochondria, B - \({F_0}\), C - \({F_1}\)
4 A - \({F_1}\), B - \({F_0}\), C-Lumen of mitochondria
BIOXI13: PHOTOSYNTHESIS IN HIGHER PLANTS

337226 Conditions required for cyclic photophosphorylation are

1 Aerobic condition, low light intensity, no enzymes
2 Aerobic condition, optimum light intensity, Enzymes
3 Anaerobic condition, low light intensity, no enzymes
4 Anaerobic condition, optimum light intensity, enzymes
BIOXI13: PHOTOSYNTHESIS IN HIGHER PLANTS

337227 During photophosphorylation electron is lost from?

1 Chlorophyll ‘a’
2 Chlorophyll ‘b’
3 Chlorophyll ‘a’ and ‘b’
4 Electron loss never occurs
BIOXI13: PHOTOSYNTHESIS IN HIGHER PLANTS

337231 In a crop field a weedicide is used to remove weeds in order to increase the yield. But the effect of this weedicide is that, it blocks electron transport from photosystem II to photosystem I. This will result in

1 Enhancement of dark reaction.
2 Failure of ATP synthesis.
3 Lack of reduction of NADP + .
4 Both (2) and (3).
BIOXI13: PHOTOSYNTHESIS IN HIGHER PLANTS

337225 The given diagram shows the Chemiosmotic hypothesis of ATP synthesis. Identify A-C in given diagram.
supporting img

1 A-Lumen of thylakoid, B-\({F_0}\), C-\({F_1}\)
2 A - \({F_0}\) , B - \({F_1}\), C - Lumen of thylakoid
3 A - Lumen of mitochondria, B - \({F_0}\), C - \({F_1}\)
4 A - \({F_1}\), B - \({F_0}\), C-Lumen of mitochondria
BIOXI13: PHOTOSYNTHESIS IN HIGHER PLANTS

337226 Conditions required for cyclic photophosphorylation are

1 Aerobic condition, low light intensity, no enzymes
2 Aerobic condition, optimum light intensity, Enzymes
3 Anaerobic condition, low light intensity, no enzymes
4 Anaerobic condition, optimum light intensity, enzymes
BIOXI13: PHOTOSYNTHESIS IN HIGHER PLANTS

337227 During photophosphorylation electron is lost from?

1 Chlorophyll ‘a’
2 Chlorophyll ‘b’
3 Chlorophyll ‘a’ and ‘b’
4 Electron loss never occurs
BIOXI13: PHOTOSYNTHESIS IN HIGHER PLANTS

337231 In a crop field a weedicide is used to remove weeds in order to increase the yield. But the effect of this weedicide is that, it blocks electron transport from photosystem II to photosystem I. This will result in

1 Enhancement of dark reaction.
2 Failure of ATP synthesis.
3 Lack of reduction of NADP + .
4 Both (2) and (3).
BIOXI13: PHOTOSYNTHESIS IN HIGHER PLANTS

337225 The given diagram shows the Chemiosmotic hypothesis of ATP synthesis. Identify A-C in given diagram.
supporting img

1 A-Lumen of thylakoid, B-\({F_0}\), C-\({F_1}\)
2 A - \({F_0}\) , B - \({F_1}\), C - Lumen of thylakoid
3 A - Lumen of mitochondria, B - \({F_0}\), C - \({F_1}\)
4 A - \({F_1}\), B - \({F_0}\), C-Lumen of mitochondria
BIOXI13: PHOTOSYNTHESIS IN HIGHER PLANTS

337226 Conditions required for cyclic photophosphorylation are

1 Aerobic condition, low light intensity, no enzymes
2 Aerobic condition, optimum light intensity, Enzymes
3 Anaerobic condition, low light intensity, no enzymes
4 Anaerobic condition, optimum light intensity, enzymes
BIOXI13: PHOTOSYNTHESIS IN HIGHER PLANTS

337227 During photophosphorylation electron is lost from?

1 Chlorophyll ‘a’
2 Chlorophyll ‘b’
3 Chlorophyll ‘a’ and ‘b’
4 Electron loss never occurs
BIOXI13: PHOTOSYNTHESIS IN HIGHER PLANTS

337231 In a crop field a weedicide is used to remove weeds in order to increase the yield. But the effect of this weedicide is that, it blocks electron transport from photosystem II to photosystem I. This will result in

1 Enhancement of dark reaction.
2 Failure of ATP synthesis.
3 Lack of reduction of NADP + .
4 Both (2) and (3).
BIOXI13: PHOTOSYNTHESIS IN HIGHER PLANTS

337225 The given diagram shows the Chemiosmotic hypothesis of ATP synthesis. Identify A-C in given diagram.
supporting img

1 A-Lumen of thylakoid, B-\({F_0}\), C-\({F_1}\)
2 A - \({F_0}\) , B - \({F_1}\), C - Lumen of thylakoid
3 A - Lumen of mitochondria, B - \({F_0}\), C - \({F_1}\)
4 A - \({F_1}\), B - \({F_0}\), C-Lumen of mitochondria
BIOXI13: PHOTOSYNTHESIS IN HIGHER PLANTS

337226 Conditions required for cyclic photophosphorylation are

1 Aerobic condition, low light intensity, no enzymes
2 Aerobic condition, optimum light intensity, Enzymes
3 Anaerobic condition, low light intensity, no enzymes
4 Anaerobic condition, optimum light intensity, enzymes
BIOXI13: PHOTOSYNTHESIS IN HIGHER PLANTS

337227 During photophosphorylation electron is lost from?

1 Chlorophyll ‘a’
2 Chlorophyll ‘b’
3 Chlorophyll ‘a’ and ‘b’
4 Electron loss never occurs
BIOXI13: PHOTOSYNTHESIS IN HIGHER PLANTS

337231 In a crop field a weedicide is used to remove weeds in order to increase the yield. But the effect of this weedicide is that, it blocks electron transport from photosystem II to photosystem I. This will result in

1 Enhancement of dark reaction.
2 Failure of ATP synthesis.
3 Lack of reduction of NADP + .
4 Both (2) and (3).