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Structural Organisation in Animals MCQs with Answers – Part 2 (Class 11 Biology)

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111. A person voluntarily bends the forearm. The relevant skeletal muscle shortens normally, but its attachment to the forearm bone is completely severed. The most likely outcome is:
ⓐ. the bone moves normally since contraction alone is sufficient
ⓑ. the muscle becomes smooth muscle after losing the attachment
ⓒ. voluntary control disappears from every skeletal muscle
ⓓ. the muscle contracts although movement of that bone is reduced
112. A skeletal muscle fibre is long, cylindrical, striated, and generally under voluntary control. Which relation best explains how these features support its usual role?
ⓐ. Fusiform cells permit slow involuntary narrowing of internal tubes
ⓑ. Parallel contractile fibres generate directed force that can be transmitted to bones
ⓒ. Branched cells joined by intercalated discs coordinate the heartbeat
ⓓ. Abundant extracellular matrix stores fat beneath the skin
113. A muscle sample consists of spindle-shaped cells that taper at both ends. No striations are visible, and the tissue forms part of the intestinal wall. It is:
ⓐ. cardiac muscle with branched striated fibres
ⓑ. smooth muscle with spindle-shaped non-striated cells
ⓒ. skeletal muscle with long striated fibres
ⓓ. dense irregular connective tissue with collagen bundles
114. A drug blocks voluntary motor commands but leaves involuntary activity in the intestinal wall intact. The contracting cells there are spindle-shaped and lack visible striations. They are:
ⓐ. skeletal muscle fibres activated voluntarily
ⓑ. cardiac muscle cells joined by intercalated discs
ⓒ. smooth muscle cells acting involuntarily
ⓓ. collagen fibres of dense regular connective tissue
115. Smooth muscle in a section of the intestinal wall becomes unable to contract, while the epithelial lining and connective support remain intact. The most direct effect is:
ⓐ. impaired involuntary movement of contents through that region
ⓑ. loss of the epithelial barrier between the lumen and body
ⓒ. disappearance of all collagen from the intestinal wall
ⓓ. conversion of the wall into voluntarily controlled skeletal muscle
116. Assertion: Smooth muscle can regulate the internal diameter of a blood vessel without voluntary effort. Reason: Smooth muscle is present in vessel walls and contracts involuntarily.
ⓐ. Assertion is true; Reason is true; explanatory link is valid
ⓑ. Assertion is true; Reason is true; explanatory link is invalid
ⓒ. Assertion is true; Reason is false; explanatory link is invalid
ⓓ. Assertion is false; Reason is true; explanatory link is invalid
117. Examine the arrangement described below. A tissue from the heart contains striated cells that branch and join neighbouring cells through specialised junctions. The tissue is:
ⓐ. smooth muscle adapted for intestinal movement
ⓑ. skeletal muscle attached directly to a long bone
ⓒ. cardiac muscle adapted for coordinated contraction
ⓓ. dense connective tissue arranged for tensile strength
118. Three muscle samples are compared.
SampleStriationCell formLocation and control
PPresentLong, cylindrical, unbranchedAttached to bones; generally voluntary
QAbsentFusiformWall of intestine; involuntary
RPresentBranched and junction-linkedHeart; involuntary
Sample R is classified as cardiac muscle mainly from the combined evidence of:
ⓐ. spindle-shaped non-striated fibres under voluntary control
ⓑ. branched striated fibres without intercalated discs
ⓒ. parallel striated fibres arranged in the intestinal wall
ⓓ. branched striated fibres joined by intercalated discs
119. Communication through the junctions between neighbouring cardiac muscle cells is selectively impaired, but individual cells remain capable of shortening. The most likely result is:
ⓐ. improved synchronisation of contractions throughout the heart
ⓑ. less coordinated contraction among neighbouring cardiac cells
ⓒ. conversion of cardiac cells into smooth muscle cells
ⓓ. loss of every striation from each affected cell
120. Evaluate the following statements about skeletal, smooth, and cardiac muscle. I. All three possess contractile ability. II. Striation alone distinguishes cardiac muscle from skeletal muscle. III. Smooth and cardiac muscles generally act involuntarily. IV. Branching and junctional coordination help distinguish cardiac muscle from skeletal muscle.
ⓐ. I is true; II is true; III is true; IV is true
ⓑ. I is true; II is true; III is false; IV is false
ⓒ. I is false; II is true; III is false; IV is true
ⓓ. I is true; II is false; III is true; IV is true
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