Photosynthesis In Higher Plants MCQs With Answers – Part 2 (Class 11 Biology)
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Photosynthesis in Higher Plants MCQs with Answers – Part 2 (Class 11 Biology)

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111. Evaluate the following statements about wavelength and photosynthetic effectiveness. I. Photosynthetic rate is generally high in blue and red light. II. The green region is usually less effective than the major blue and red regions. III. Photosynthesis must be exactly zero at every wavelength outside the major peaks. IV. Accessory pigments can contribute to activity at wavelengths weakly absorbed by chlorophyll a.
ⓐ. Statements I and III are correct; statements II and IV are incorrect
ⓑ. Statements II and III are correct; statements I and IV are incorrect
ⓒ. Statements I, II and IV are correct; statement III is incorrect
ⓓ. Statements I, II, III and IV are all correct
112. At equal photon supply, a leaf shows relative photosynthetic rates of \(96\) in blue light, \(72\) in red light and \(24\) in green light. Which result and interpretation are supported by these data?
ⓐ. The blue-to-green ratio is \(1:4\), so green light is more effective
ⓑ. A \(4:1\) blue-to-green ratio, with measurable photosynthesis in green light
ⓒ. The blue-to-green ratio is \(3:1\), so green light produces no photosynthesis
ⓓ. The blue-to-green ratio is \(5:1\), while red light is completely ineffective
113. Chlorophyll a is regarded as the chief photosynthetic pigment mainly because it:
ⓐ. forms reaction centres and matches major action-spectrum peaks
ⓑ. is the only pigment capable of absorbing any visible wavelength
ⓒ. produces starch directly without electron transfer or enzymes
ⓓ. occurs only in non-photosynthetic tissues exposed to darkness
114. Assertion: Chlorophyll b is the specialised reaction-centre pigment in both photosystems. Reason: A specialised chlorophyll a molecule forms the reaction centre of each photosystem.
ⓐ. Both the Assertion and the Reason are true, and the Reason correctly explains the Assertion
ⓑ. Both the Assertion and the Reason are true, but the Reason does not explain the Assertion
ⓒ. The Assertion is true, whereas the Reason is false and cannot explain the Assertion
ⓓ. The Assertion is false, whereas the Reason is true and cannot explain the Assertion
115. A photosystem is described as a protein-associated pigment complex containing hundreds of surrounding pigment molecules and one centrally functional chlorophyll a molecule connected to a primary electron acceptor. The surrounding pigments and the specialised chlorophyll a function, respectively, as:
ⓐ. an antenna system and a reaction centre
ⓑ. a carbon acceptor and a hydrogen donor
ⓒ. an ATP synthase and a proton channel
ⓓ. a stromal enzyme and a thylakoid lumen
116. An absorption curve for purified chlorophyll a and an action-spectrum curve for an intact leaf share major blue and red peaks, but the action curve is higher than the chlorophyll a curve in some intermediate wavelengths. The mismatch most strongly indicates that:
ⓐ. action spectra measure only pigment concentration
ⓑ. chlorophyll a is absent from the intact leaf
ⓒ. accessory pigments contribute at some wavelengths
ⓓ. photosynthesis is unrelated to light absorption
117. Two otherwise comparable preparations give the following results.
MeasurementComplete pigment systemChlorophyll a functioning without most accessory pigments
Use of intermediate visible wavelengthsModerateLow
Red-region activityHighHigh
Damage under prolonged intense lightLowHigh
Which conclusion integrates all three observations?
ⓐ. Accessory pigments replace chlorophyll a as the reaction centre
ⓑ. Accessory pigments broaden light use and contribute to photoprotection
ⓒ. Accessory pigments prevent all red-light absorption by chlorophyll a
ⓓ. Accessory pigments perform carbon fixation in the thylakoid lumen
118. Accessory pigments remain able to absorb light, but a treatment blocks transfer of their excitation energy to reaction-centre chlorophyll a. The most immediate effect is:
ⓐ. carbon dioxide begins serving as the primary electron acceptor of the photosystem
ⓑ. accessory-pigment energy contributes less to charge separation
ⓒ. every photon absorbed directly by chlorophyll a is also blocked
ⓓ. accessory pigments become the enzymes of the Calvin cycle
119. Arrange the events by which an accessory pigment contributes to photosynthetic electron excitation. P. An accessory pigment absorbs a photon. Q. Excitation energy moves through the antenna pigments. R. Reaction-centre chlorophyll a becomes excited. S. A high-energy electron is transferred to a primary acceptor.
ⓐ. P → Q → R → S
ⓑ. Q → P → S → R
ⓒ. R → S → P → Q
ⓓ. P → R → Q → S
120. Match each term with the measurement or function it represents. A Column II entry is used once.
Column IColumn II
P. Absorption spectrum1. Photosynthetic effectiveness at different wavelengths
Q. Action spectrum2. Transfer of captured excitation toward the reaction centre
R. Antenna pigments3. Light absorbed by a pigment at different wavelengths
S. Reaction-centre chlorophyll a4. Initiation of electron transfer to a primary acceptor
ⓐ. P-1, Q-3, R-4, S-2
ⓑ. P-3, Q-2, R-1, S-4
ⓒ. P-3, Q-1, R-2, S-4
ⓓ. P-2, Q-1, R-4, S-3
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