100 MCQs | Class 11 Physics Motion In A Straight Line MCQs
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Class 11 Physics | Motion In A Straight Line MCQs with Answers – Part 3

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211. A \(v-t\) graph shows a line segment exactly along the time axis. During that segment, the body has
ⓐ. zero velocity
ⓑ. maximum positive velocity
ⓒ. negative acceleration necessarily
ⓓ. changing position uniformly
212. The area under a velocity-time graph for straight-line motion gives
ⓐ. acceleration
ⓑ. displacement
ⓒ. final position coordinate directly
ⓓ. instantaneous speed only
213. A body moves with constant velocity \(+6\,\text{m s}^{-1}\) for \(5\,\text{s}\). The displacement from the \(v-t\) graph is
ⓐ. \(+11\,\text{m}\)
ⓑ. \(+30\,\text{m}\)
ⓒ. \(+6\,\text{m}\)
ⓓ. \(+1.2\,\text{m}\)
214. A velocity-time graph is a horizontal line at \(v=-4\,\text{m s}^{-1}\) from \(t=0\,\text{s}\) to \(t=6\,\text{s}\). The displacement is
ⓐ. \(+24\,\text{m}\)
ⓑ. \(+10\,\text{m}\)
ⓒ. \(-10\,\text{m}\)
ⓓ. \(-24\,\text{m}\)
215. A body starts from rest and its velocity increases uniformly to \(12\,\text{m s}^{-1}\) in \(4\,\text{s}\). The displacement from the \(v-t\) graph is
ⓐ. \(12\,\text{m}\)
ⓑ. \(24\,\text{m}\)
ⓒ. \(36\,\text{m}\)
ⓓ. \(48\,\text{m}\)
216. A \(v-t\) graph shows velocity increasing uniformly from \(4\,\text{m s}^{-1}\) to \(10\,\text{m s}^{-1}\) in \(3\,\text{s}\). The displacement is
ⓐ. \(12\,\text{m}\)
ⓑ. \(18\,\text{m}\)
ⓒ. \(21\,\text{m}\)
ⓓ. \(30\,\text{m}\)
217. A velocity-time graph lies above the time axis from \(0\,\text{s}\) to \(3\,\text{s}\) and below the time axis from \(3\,\text{s}\) to \(5\,\text{s}\). For finding displacement, the areas should be
ⓐ. added as positive areas only
ⓑ. subtracted using signed areas
ⓒ. ignored because the graph crosses the time axis
ⓓ. replaced by the slope of the graph
218. Use the graph description below.
From \(t=0\,\text{s}\) to \(t=4\,\text{s}\), a \(v-t\) graph is a horizontal line at \(+5\,\text{m s}^{-1}\). From \(t=4\,\text{s}\) to \(t=7\,\text{s}\), it is a horizontal line at \(-2\,\text{m s}^{-1}\).
The displacement for the whole interval is
ⓐ. \(+14\,\text{m}\)
ⓑ. \(+20\,\text{m}\)
ⓒ. \(+26\,\text{m}\)
ⓓ. \(-26\,\text{m}\)
219. For the graph in which the positive area under a \(v-t\) curve is \(18\,\text{m}\) and the negative area has magnitude \(7\,\text{m}\), the displacement and distance are respectively
ⓐ. \(25\,\text{m}\) and \(11\,\text{m}\)
ⓑ. \(11\,\text{m}\) and \(25\,\text{m}\)
ⓒ. \(-11\,\text{m}\) and \(25\,\text{m}\)
ⓓ. \(18\,\text{m}\) and \(7\,\text{m}\)
220. A \(v-t\) graph is a straight line from \(v=+8\,\text{m s}^{-1}\) at \(t=0\,\text{s}\) to \(v=0\,\text{m s}^{-1}\) at \(t=4\,\text{s}\). The displacement is
ⓐ. \(8\,\text{m}\)
ⓑ. \(16\,\text{m}\)
ⓒ. \(24\,\text{m}\)
ⓓ. \(32\,\text{m}\)
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