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Three blocks A, B, & C are arranged as s...

Three blocks A, B, & C are arranged as shown. Pulley and strings are ideal. All surfaces are frictionless. If block C is observed moving down along the incline at `1 m//s^(2)`. Find mass of block B, tension in string and accelerations of A. B as the system is released from rest.

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ANURAG MISHRA-FORCE ANALYSIS-Example
  1. In the pulley system shown in figure the movable pulleys A, B and C ar...

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  2. Two identical blocks each having a mass of 20 kg are connected to each...

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  3. Three blocks A, B, & C are arranged as shown. Pulley and strings are i...

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  4. The system shown in the Fig. is given an acceleration 'a' towards left...

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  5. The block B starts from rest and slides on the wedge A which can move ...

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  6. In the Fig. shown, mass 'm' is being pulled on the incline of a wedge ...

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  7. A rod 'A' constrained to move in vertical direction rests on a wedge B...

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  8. A block weighing 20 N rests on a horizontal surface. The: coefficient ...

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  9. A wedge of mass M makes an angle theta with the horizontal. The wedge ...

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  10. Find the acceleration of the block and magnitude and direction of fric...

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  11. The 10 kg block is resting on the horizontal surface when the force 'F...

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  12. A force F = 20 N is applied to a block (at rest) as shown in figure. A...

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  13. Find the contact force on the 1 kg block.

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  14. Blocks A and Bin the Fig. 2E.46 .(a) are connected With a string of ne...

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  15. In the Fig. shown a time dependent force F expressed as F=kt is applie...

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  16. m=20 kg, mu(s)=0.5, find friction on block.

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  17. Find theta at which slipping will start. mu(s) is coefficient of stati...

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  18. Blocks are given velocities as shown at t=0, find velocity and positio...

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  19. Find acceleration of blocks F=40 N

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  20. Find Force acting on object B.

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