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The friction coefficient between the boa...

The friction coefficient between the board and the floor shown in figure is `mu` Find the maximum force that the man can exert on the rope so that the board does not slip on the floor

Text Solution

Verified by Experts

`N+T=(N+m)g`
`N=(M+m)g-T`
Condition of man for no slipping to be occur is
`T=f_(r)rArrT=muNrArrT=mu(M+m)g-T)`
`rArrT(1+mu)=mu(M+m)grArrT=(mu(M+m)g)/((1+mu))`
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ALLEN-NEWTONS LAWS OF MOTION-SWOE
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  2. A block of mass'm' it kept over the smooth surface of the plank of mas...

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  3. The friction coefficient between the board and the floor shown in figu...

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  4. A man of mass 7.0 kg stands on a weighing scale in a lift which is mov...

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  5. Explain why (a) A horse cannot pull a cart and run in empty space. ...

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  7. A block of mass 1kg is at rest on a rough horizontal surface having co...

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  8. Assuming the length of a chain to be L and coefficient of static frict...

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  9. If the coefficient of friction between an insect and bowl is mu and th...

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  10. A body of mass M is kept on a rough horizontal surface (friction coeff...

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  11. A block rest on a rough inclined plane as shown in fig. A horizontal f...

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  12. Two blocks of masses m(1)=1 kg and m(2)=2 kg are connected by a string...

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  13. For shown situation draw a graph showing acceleration of A and B on y-...

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  14. A block of mass m rests on a rough horizontl surface as shown in figur...

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  15. A body of mass m rests on a horizontal floor with which it has a coeff...

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  16. A block of 1 kg is stopped against a wall by applying a force F perpen...

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  17. Two block A and B placed on a plane surface as shown in the figure. Th...

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  18. Consider the figure shown here of a moving cart C. if the coefficient ...

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  19. A block of mass kg lies on a horizontal surface in a truck· The coeff...

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  20. Coefficient of friction between two block shown in figure is mu = 0.4....

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