The velocity \( (v) \) - time \( (t) \) graph of a body moving in a straight line is shown in Fi...
The velocity \( (v) \) - time \( (t) \) graph of a body moving in a straight line is shown in Fig. 3(CF).20. Match the quantities of column I and column II
\( \begin{array}{lll}\text { (A) Distance travelled in } 8 \text { seconds } & \text { Column } \\ \text { (B) Distance travelled in } 10 \text { seconds } & (q) 60 \mathrm{~m} \\ \text { (C) Displacement in } 8 \text { seconds } & (r) 80 \mathrm{~m} \\ \text { (D) Displacement in } 10 \text { seconds } & (s) 100 \mathrm{~m}\end{array} \)
(A) \( \mathrm{A}-p ; \mathrm{B}-q ; \mathrm{C}-r ; \mathrm{D}-s \)
(B) \( \mathrm{A}-q ; \mathrm{B}-r ; \mathrm{C}-s ; \mathrm{D}-p \)
(C) \( \mathrm{A}-r, \mathrm{~B}-s, \mathrm{C} \cdot p ; \mathrm{D}-q \)
(D) A-r;B-s;C-q; D-p
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