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Two blocks of masses 2.0 kg and 3.0 kg a...

Two blocks of masses `2.0` kg and `3.0` kg are connected by light inextensible string. The string passes ove an ideal pulley pivoted to a fixed axel on a smooth incline place as shown in the figure. When the blocks are released, find magnitude of their accelerations.

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The correct Answer is:
`g/10m//s^(2)`
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ALLEN -NEWTON'S LAWS OF MOTION & FRICTION-EXERCISE (S-1)
  1. A force F applied to an object of mass m(1) produces an acceleration o...

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  2. In the system shown, the blocks A,B and C are of weight 4W, W and W re...

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  3. Two blocks of masses 2.0 kg and 3.0 kg are connected by light inextens...

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  4. In the system shown, pulley and strings are ideal. The vertically upwa...

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  5. Force F is applied on upper pulley. If F = 30 t where t is time in sec...

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  6. A 40 kg boy climbs a rope that passes over an ideal pulley. The other ...

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  7. A 1kg block B rests as shown on a bracket A of same mass. Constant for...

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  8. Find the reading of the massless spring balance in the given condition

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  9. The system shown adjacent is in equilibrium. Find the acceleration of ...

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  10. A block of mass m lies on wedge of mass. Mas shown in figure. Wit...

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  11. The block A is moving downward with constant velocity v(0.) Find the v...

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  12. Find force in newton which mass A exert on mass B if B is moving to wa...

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  13. Rod A can slide in vertical direction pushing the triangular wedge B t...

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  14. Calculate the relative acceleration of A w.r.t. B if B is moving with ...

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  15. A block is placed on a rough horizontal plane. Three horizontalforces ...

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  16. A force of 100 N is applied on a block of mass 3kg as shown below. The...

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  17. Two trolleys A and B are moving with accelerations a and 2a, respectiv...

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  18. A thin rod of length 1 m is fixed in a vertical position inside a trai...

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  19. A block of mass m(1) = 1 kg is horizontally thrown with a velocity of ...

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  20. A block of mass m lies on wedge of mass Mas shown in figure. Find the ...

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