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In relation to a velocity-time graph...

In relation to a velocity-time graph

A

the curve can be a circle

B

the area under the curve and above the time axis between any two instants gives the average acceleration.

C

the slope at any instant gives the rate of change of acceleration at that instant

D

the area under the curve and above the time axis gives the displacement.

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The correct Answer is:
D
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Graphs are very useful to represent a physical situation. Various quantities can be easily represented on graphs and other quantites can be determined from the graph. For example the slope of velocity-time graph represents instantaneous acceleration. For a motion with constant acceleration slope of velocity-time graph is constant. If acceleration is changing with time, slope with change and thus velocity-time graph will be a non-linear curve. Further the area of velocity-time graph gives displacement. For the given velocity-time graph the possibly correct acceleration-time relationship is

Graphs are very useful to represent a physical situation. Various quantities can be easily represented on graphs and other quantites can be determined from the graph. For example the slope of velocity-time graph represents instantaneous acceleration. For a motion with constant acceleration slope of velocity-time graph is constant. If acceleration is changing with time, slope with change and thus velocity-time graph will be a non-linear curve. Further the area of velocity-time graph gives displacement. The velocity-time graph for two objects P and Q are shown. The ratio of their respective acceleration is

Graphs are very useful to represent a physical situation. Various quantities can be easily represented on graphs and other quantites can be determined from the graph. For example the slope of velocity-time graph represents instantaneous acceleration. For a motion with constant acceleration slope of velocity-time graph is constant. If acceleration is changing with time, slope with change and thus velocity-time graph will be a non-linear curve. Further the area of velocity-time graph gives displacement. For the above situation let t_(1) be the time of accelerated motion and t_(2) be the time or retarded motion, then the correct relation is

Graphs are very useful to represent a physical situation. Various quantities can be easily represented on graphs and other quantites can be determined from the graph. For example the slope of velocity-time graph represents instantaneous acceleration. For a motion with constant acceleration slope of velocity-time graph is constant. If acceleration is changing with time, slope with change and thus velocity-time graph will be a non-linear curve. Further the area of velocity-time graph gives displacement. For the given velocity-time graph the fisplacement of the object vetween t = 2 s to t = 4 s is

Draw the velocity-time graph for an object in uniform motion. Show that the area under the velocity-time graph gives the displacement of the object in the given time interval.

The displacement-time graph of a body is shown in. . The velocity-time graph of the motion of the body will be .

Draw the velocity-time graph for uniformly accelerated motion. Show that slope of the velocity-time graph gives acceleration of the object.

NARAYNA-MOTION IN A STRAIGHT LINE-C.U.Q
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  2. A person standing near the edge of the top of a building throws two ba...

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  3. A lift is coming from 8th floor and is just about to reach 4th floor. ...

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  4. Choose the correct statement:

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  5. Velocity-time graph of a body thrown vertically up is

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  6. Velocity-displacement graph of a freely falling body is

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  7. Displacement-time graph of a body projected vertically up is

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  8. The displacement-time graphs of two bodies A and B are OP and OQ respe...

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  9. If the distance travelled by a particle and corresponding time be laid...

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  10. In relation to a velocity-time graph

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  11. The displacment-time graph of a particle moving with respect to a refe...

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  12. For a uniform motion.

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  13. Figure shows the displacement time graph of a particle moving on the X...

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  14. The variation of quantity A with quantity B. plotted in the fig. Descr...

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  15. The displacement-time graph of moving particle is shown below The...

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  16. Which of the following option is correct for the object having a stari...

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  17. The displacement of a particle as a funtion of time is shown in the fi...

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  18. A uniform moving cricket ball is turned back by hitting it with a bat ...

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  19. A small body is dropped from a rising balloon. A person A stands on gr...

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  20. Seeta is moving due east with a velocity of V(1) m//s and geets iss mo...

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