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What does the slope of a displacement-ti...

What does the slope of a displacement-time graph represent?

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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 will 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 will change and thus velocity-time graph will be a non-linear curve. Further the area of velocity-time graph gives displacement. The correct relation between v_(0),a_(1),a_(2) and t_(0) 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 average velocity of the car for the entire trip 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 will 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 displacement of the object between t = 2 s to t = 4 s 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. A car starts from rest with a constant acceleration a_(1) for some time and attains a velocity v_(0) . Then it immediately retards at a constant rate a_(2) to rest. The total time to journey is t_(0) Identify the correct velocity-time graph

ICSE-MOTION IN ONE DIMENSION -EXERCISE -2 (B)
  1. For the motion with uniform velocity, how is the distance travelled re...

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  2. What informations about the motion of a body are obtained from the dis...

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  3. What does the slope of a displacement-time graph represent?

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  4. Can displacement-time sketch be parallel to the displacement axis ? Gi...

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  5. Draw a displacement-time graph for a boy going to school with a unifor...

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  6. State how the velocity-time graph can be used to find (i) the accelera...

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  7. What can you say about the nature of motion of a body if its displacem...

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  8. Fig. 2.33 shows displacement-time graph of two vehicles A and B moving...

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  9. State the type of motion represented by the following sketches in Fig....

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  10. Draw a velocity-time graph for a body moving with an initial velocity ...

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  11. What does the slope of a displacement-time graph represent?

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  12. Fig 2.35 shows the velocity-time graph for two cars A and B moving in ...

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  13. Draw the shape of the velocity-time graph for a body moving with (a) u...

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  14. The velocity-time graph for a uniformly retarded body is a straight li...

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  15. Fig. 2.36 shows the displacement-time graph for four bodies A, B, C an...

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  16. Draw a graph for acceleration against time for a uniformly accelerated...

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  17. Draw a velocity-time graph for the free fall of a body under gravity, ...

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  18. How is the distance related with time for the motion under uniform acc...

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  19. A body falls freely from a certain height. Show graphically the relati...

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