The speed-time graph of a particle moving along a fixed direction is shown in the figure. Then the distance traversed by the particle between \(t=0\) s to \(10\) s is:
        
1. \(70\) m
2. \(60\) m
3. \(50\) m
4. \(40\) m

Subtopic:  Graphs |
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Various velocity-time graphs are given below. The graph representing motion where velocity changes direction is:

(a) (b)
(c) (d)


1. graph (a)
2. graph (b)
3. graph (c)
4. graph (d)

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Different position-time graphs are given for objects moving in different conditions. The graph representing object moving with positive acceleration is 

1. Graph \(\mathrm a\)
2. Graph \(\mathrm b\)
3. Graph \(\mathrm c\)
4. None of the above

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The speed \((s)\) of a car as a function of time \((t)\) is shown figure, The distance travelled by the car in \(8\) seconds is:
1. \(180~\text{m}\) 2. \(60~\text{m}\)
3. \(80~\text{m}\) 4. \(18~\text{m}\)
Subtopic:  Graphs |
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NEET - 2024
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A particle shows the distance-time curve as given in this figure. The maximum instantaneous velocity of the particle is around the point:

         

1. \(B\)
2. \(C\)
3. \(D\)
4. \(A\)

Subtopic:  Graphs |
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AIPMT - 2008
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The variation of quantity \(A\) with quantity \(B\), plotted in figure describes the motion of a particle in a straight line.
(a) Quantity \(B\) may represent time.
(b) Quantity \(A\) is velocity if motion is uniform.
(c) Quantity \(A\) is displacement if motion is uniform.
(d) Quantity \(A\) is velocity if motion is uniformly accelerated.
Choose the correct option:
1. (a), (c), (d)
2. (a) only
3. (b) only
4. (d) only
Subtopic:  Graphs |
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A car moving in a positive \({x}\text-\)direction with uniform positive acceleration. Which one of the following velocity-time graphs correctly represents the motion of the car?
1. 2.
3. 4.
Subtopic:  Graphs |
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The velocity \((v)\)-time \((t)\) plot of the motion of a body is shown below: 
                     
The acceleration \((a)\)-time \((t)\) graph that best suits this motion is: 
1. 2.
3. 4.
Subtopic:  Graphs |
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NEET - 2024
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The figure given below shows the displacement and time, \((x\text -t)\) graph of a particle moving along a straight line:
           
The correct statement, about the motion of the particle, is:

1. the particle moves at a constant velocity up to a time \(t_0\) and then stops.
2. the particle is accelerated throughout its motion.
3. the particle is accelerated continuously for time \(t_0\) then moves with constant velocity.
4. the particle is at rest.

Subtopic:  Graphs |
 77%
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NEET - 2022
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The velocity versus time \((v\text-t)\) graph for a body moving with constant positive acceleration is given by:
1.   2.
3.   4.
Subtopic:  Graphs |
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