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The Living World MCQs with Answers – Part 2 (Class 11 Biology)

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111. A validated catalogue contains \(1.70\,\text{million}\) known and described species. After \(80{,}000\) additional distinct species are verified and added without duplication, the new catalogue total and its relation to the stated estimate are:
ⓐ. \(1.78\,\text{million}\); it lies within the \(1.7\text{–}1.8\,\text{million}\) estimate
ⓑ. \(1.62\,\text{million}\); it falls below the stated estimate
ⓒ. \(1.80\,\text{million}\); it must equal the total number of species on Earth
ⓓ. \(1.88\,\text{million}\); it exceeds the stated estimate
112. A survey records \(120\) distinct kinds in its original area. Expanding into an adjacent habitat adds \(45\) previously unrecorded kinds and redetects \(15\) already listed kinds. The new cumulative richness and percentage increase are:
ⓐ. \(180\) kinds and \(50\%\)
ⓑ. \(135\) kinds and \(12.5\%\)
ⓒ. \(165\) kinds and \(27.3\%\)
ⓓ. \(165\) kinds and \(37.5\%\)
113. Equal sampling effort is used in a small cultivated plot and a structurally varied dense forest. The plot yields \(18\) distinct kinds, while the forest yields \(74\). The strongest conclusion is:
ⓐ. every dense forest on Earth must contain exactly \(74\) kinds
ⓑ. the cultivated plot contains no biodiversity since its count is lower
ⓒ. the sampled forest showed greater observed variety under equal effort
ⓓ. sampling effort is irrelevant whenever habitats differ in structure
114. A region is surveyed during three seasons using the same identification procedure. The first survey records \(52\) kinds, the second adds \(11\) previously unrecorded kinds, and the third adds \(6\) more. The findings most strongly support:
ⓐ. repeat surveys can reveal more organisms in the region
ⓑ. organisms are created by the act of conducting repeated surveys
ⓒ. the first survey was invalid since later records were added
ⓓ. every future survey must add exactly \(6\) new kinds
115. Equal water samples are examined by two methods. Direct visual inspection detects no organisms, while microscopic examination reveals several kinds of living cells. The experiment demonstrates that:
ⓐ. magnification creates microscopic organisms that were absent from the original sample
ⓑ. failure to detect organisms by one method does not establish their absence from the sample
ⓒ. direct visual inspection is more sensitive than microscopy for detecting small living cells
ⓓ. every organism present in water requires magnification before it can be detected
116. A species-accumulation graph plots cumulative recorded kinds against equal units of survey effort. The totals after four units are \(25\), \(40\), \(49\) and \(54\). The relationship shown is best described as:
ⓐ. cumulative richness decreases as effort increases
ⓑ. the fourth survey unit adds more kinds than the second
ⓒ. new kinds still appear, but gains decline with added effort
ⓓ. the inventory is complete as soon as the curve rises less steeply
117. An inventory begins with \(80\) known kinds. Three additional habitats yield the records P: \(40\) observed, \(12\) new; Q: \(30\) observed, \(15\) new; R: \(50\) observed, \(10\) new. Which result combines the highest novelty rate with the final cumulative richness?
ⓐ. Habitat P and \(117\) kinds
ⓑ. Habitat R and \(130\) kinds
ⓒ. Habitat Q and \(117\) kinds
ⓓ. Habitat Q and \(175\) kinds
118. An area studied repeatedly for decades is surveyed again using careful organismal comparison. A distinct form not present in earlier records is identified. The most defensible conclusion is:
ⓐ. previously explored regions can still yield newly identified organisms
ⓑ. the organism must have originated only after the earlier surveys ended
ⓒ. all previous biological records from the region are unreliable
ⓓ. old study areas contain less diversity than every unexplored area
119. Field workers in two regions use different familiar words for specimens later confirmed to belong to the same organism. The difference represents ______ rather than evidence of two biological kinds.
ⓐ. placement at separate taxonomic ranks
ⓑ. failure of the specimens to share identity
ⓒ. assignment of one name to unrelated organisms
ⓓ. geographic variation in local naming
120. Records from two regions are shown below.
RegionLocal nameOrganism represented
PBlue reedOrganism X
QBlue reedOrganism Y
If X and Y are biologically distinct, the records demonstrate that:
ⓐ. one organism must always possess several scientific names
ⓑ. one local name may denote different regional organisms
ⓒ. regional usage automatically places X and Y in the same species
ⓓ. identical wording guarantees identical biological identity
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