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The area under acceleration-time graph g...

The area under acceleration-time graph gives

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Explore conceptually related problems

A : The area under acceleration - time graph is equal to velocity of object. R : For an object moving with constant acceleration, position - time graph is a straight line.

Completion type Question : The area under the acceleration-time graph gives ……….. For the given time interval.

Assertion: Area under velocity-time graph give displacement. Reason: Area under acceleration-time graph give velocity.

What does the area under acceleration-time graph for any interal of time represents when the accleration of the moving body is varing with time ?

The area under the acceleration-time (a-t) graph gives

Area under a velocity-time graph gives

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.

SL ARORA-MECHANICS-Exercise
  1. What does the slope of velocity-time graph represent ?

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  2. The area under velocity-time graph for a particle in a given interval ...

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  3. The area under acceleration-time graph gives

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  4. The displacement-time graph for two particles A and B are straight lin...

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  5. Is the time variationof position, shown in the adjacent figure, observ...

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  6. Displacement-time graph of any object is shown in the adjacent figure....

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  7. Acceleration is defined as the rate of change of velocity. Suppose we ...

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  8. What are the characteristics of uniform motion ?

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  9. Use graphical method to derive the relation v^(2) - u^(2) = 2 as, wher...

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  10. Prove that x = x0 + v0 t + 1/2 at^(2).

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  11. Show that the slope of displacement-time graph is equal to the velcoit...

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  12. Draw velocity-time graphof uniform motion and prove that the area unde...

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  13. Using graphical method, derive the equations v = u + at and s = ut +...

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  14. Use velocity time graph to derive the relation : v^(2)-u^(2)=2 as, whe...

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  15. Distinguish between average velocity and instanteneous velocity. If th...

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  16. Explain with example the distinction between the magnitude of average ...

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  17. Derive the equations of motion given below: v=u+at

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  18. Using graphical method, derive the equations v = u + at and s = ut +...

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  19. Check the dimensional consistency of the following equations : (i) u...

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  20. Prove the following relations by calculus method: v^2-u^2=2as

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