Electron Transport System
NEET Test Series from KOTA - 10 Papers In MS WORD WhatsApp Here
BIOXI14: RESPIRATION IN PLANTS

337499 Match the following and choose the correct option from those given below:
Column I
Column II
A
Molecular oxygen
1
α-Ketogluric acid
B
Electron acceptor
2
Hydrogen acceptor
C
Pyruvate dehydrogenase
3
Cytochrome C
D
Decarboxylation
4
Acetyl CoA

1 A–2, B–3, C–4, D–1
2 A–3, B–4, C–2, D–1
3 A–2, B–1, C–3, D–4
4 A –4, B–3, C–1, D–2
BIOXI14: RESPIRATION IN PLANTS

337500 Match the columns I & II and choose the correct option.
Column I
Column II
A
Cytochrome c
P
Ubiquinone
B
Complex IV
Q
ATP synthase
C
Complex V
R
Small protein attached to the outer surface of the inner mitochondrial membrane
D
Mobile electron carrier
S
Contains cytochromes a and a3 and 2 copper centres

1 A-R, B-S, C-P, D-Q
2 A-R, B-S, C-Q, D-P
3 A-Q, B-R, C-S, D-P
4 A-Q, B-P, C-S, D-R
BIOXI14: RESPIRATION IN PLANTS

337501 Cytochrome \(\mathrm{c}\) is a small protein attached to the

1 Inner surface of the outer membrane
2 Outer surface of the outer membrane
3 Outer surface of the inner membrane
4 Inner surface of the inner membrane
BIOXI14: RESPIRATION IN PLANTS

337502 Choose the correct statement:

1 Pyruvate is formed in the mitochondrial matrix.
2 During the conversion of succinyl Co-A to succinic acid a molecule of ATP is synthesized in animals
3 Oxygen is vital in respiration for removal of hydrogen.
4 There is complete breakdown of glucose in fermentation.
BIOXI14: RESPIRATION IN PLANTS

337499 Match the following and choose the correct option from those given below:
Column I
Column II
A
Molecular oxygen
1
α-Ketogluric acid
B
Electron acceptor
2
Hydrogen acceptor
C
Pyruvate dehydrogenase
3
Cytochrome C
D
Decarboxylation
4
Acetyl CoA

1 A–2, B–3, C–4, D–1
2 A–3, B–4, C–2, D–1
3 A–2, B–1, C–3, D–4
4 A –4, B–3, C–1, D–2
BIOXI14: RESPIRATION IN PLANTS

337500 Match the columns I & II and choose the correct option.
Column I
Column II
A
Cytochrome c
P
Ubiquinone
B
Complex IV
Q
ATP synthase
C
Complex V
R
Small protein attached to the outer surface of the inner mitochondrial membrane
D
Mobile electron carrier
S
Contains cytochromes a and a3 and 2 copper centres

1 A-R, B-S, C-P, D-Q
2 A-R, B-S, C-Q, D-P
3 A-Q, B-R, C-S, D-P
4 A-Q, B-P, C-S, D-R
BIOXI14: RESPIRATION IN PLANTS

337501 Cytochrome \(\mathrm{c}\) is a small protein attached to the

1 Inner surface of the outer membrane
2 Outer surface of the outer membrane
3 Outer surface of the inner membrane
4 Inner surface of the inner membrane
BIOXI14: RESPIRATION IN PLANTS

337502 Choose the correct statement:

1 Pyruvate is formed in the mitochondrial matrix.
2 During the conversion of succinyl Co-A to succinic acid a molecule of ATP is synthesized in animals
3 Oxygen is vital in respiration for removal of hydrogen.
4 There is complete breakdown of glucose in fermentation.
BIOXI14: RESPIRATION IN PLANTS

337499 Match the following and choose the correct option from those given below:
Column I
Column II
A
Molecular oxygen
1
α-Ketogluric acid
B
Electron acceptor
2
Hydrogen acceptor
C
Pyruvate dehydrogenase
3
Cytochrome C
D
Decarboxylation
4
Acetyl CoA

1 A–2, B–3, C–4, D–1
2 A–3, B–4, C–2, D–1
3 A–2, B–1, C–3, D–4
4 A –4, B–3, C–1, D–2
BIOXI14: RESPIRATION IN PLANTS

337500 Match the columns I & II and choose the correct option.
Column I
Column II
A
Cytochrome c
P
Ubiquinone
B
Complex IV
Q
ATP synthase
C
Complex V
R
Small protein attached to the outer surface of the inner mitochondrial membrane
D
Mobile electron carrier
S
Contains cytochromes a and a3 and 2 copper centres

1 A-R, B-S, C-P, D-Q
2 A-R, B-S, C-Q, D-P
3 A-Q, B-R, C-S, D-P
4 A-Q, B-P, C-S, D-R
BIOXI14: RESPIRATION IN PLANTS

337501 Cytochrome \(\mathrm{c}\) is a small protein attached to the

1 Inner surface of the outer membrane
2 Outer surface of the outer membrane
3 Outer surface of the inner membrane
4 Inner surface of the inner membrane
BIOXI14: RESPIRATION IN PLANTS

337502 Choose the correct statement:

1 Pyruvate is formed in the mitochondrial matrix.
2 During the conversion of succinyl Co-A to succinic acid a molecule of ATP is synthesized in animals
3 Oxygen is vital in respiration for removal of hydrogen.
4 There is complete breakdown of glucose in fermentation.
BIOXI14: RESPIRATION IN PLANTS

337499 Match the following and choose the correct option from those given below:
Column I
Column II
A
Molecular oxygen
1
α-Ketogluric acid
B
Electron acceptor
2
Hydrogen acceptor
C
Pyruvate dehydrogenase
3
Cytochrome C
D
Decarboxylation
4
Acetyl CoA

1 A–2, B–3, C–4, D–1
2 A–3, B–4, C–2, D–1
3 A–2, B–1, C–3, D–4
4 A –4, B–3, C–1, D–2
BIOXI14: RESPIRATION IN PLANTS

337500 Match the columns I & II and choose the correct option.
Column I
Column II
A
Cytochrome c
P
Ubiquinone
B
Complex IV
Q
ATP synthase
C
Complex V
R
Small protein attached to the outer surface of the inner mitochondrial membrane
D
Mobile electron carrier
S
Contains cytochromes a and a3 and 2 copper centres

1 A-R, B-S, C-P, D-Q
2 A-R, B-S, C-Q, D-P
3 A-Q, B-R, C-S, D-P
4 A-Q, B-P, C-S, D-R
BIOXI14: RESPIRATION IN PLANTS

337501 Cytochrome \(\mathrm{c}\) is a small protein attached to the

1 Inner surface of the outer membrane
2 Outer surface of the outer membrane
3 Outer surface of the inner membrane
4 Inner surface of the inner membrane
BIOXI14: RESPIRATION IN PLANTS

337502 Choose the correct statement:

1 Pyruvate is formed in the mitochondrial matrix.
2 During the conversion of succinyl Co-A to succinic acid a molecule of ATP is synthesized in animals
3 Oxygen is vital in respiration for removal of hydrogen.
4 There is complete breakdown of glucose in fermentation.