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In the diamram shown in figure , match ...

In the diamram shown in figure , match the following `(g=10m//s^(2))`
1035273Column IColumn II(P) Acceleration of block (in )(1) 5(Q) Acceleration of block (in )(2) 50(R) Normal reaction between and (in N)(3) 45(S) Normal reaction between and (in N)(4) 60

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The correct Answer is:
A-R B-T C-Q D-T
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In the diagram shown in figure, match the following (g=10 m//s^(2)) {:(,"Column-I",,,"Coloumn-II"),((A),"Acceleration of 2kg block",,(P), "8 Si unit"),((B),"Net force on 3kg block",,(Q),"25 SI unit"),((C),"Normal reaction between 2 kg and 1kg",,(R),"2 SI unit"),((D),"Normal reaction between 3 kg and 2kg " ,,(S)," 45 SI unit"),(,,,(T)," None"):}

In the diagram shown in figure. Match the following columns. {:("Colmun I","Column II"),("(A) Absolute acceleration of 1 kg block",(p) 11 ms^(-2)),("(B) Absolute acceleration of 2 kg block",(q)6 ms^(-2)),("(C) Relative acceleration between the two",(r) 17 ms^(-2)),(,(s) "None"):}

In the figure shown ,find : (g = 10 m//s^(2)) (a) acceleration of 1 kg,2 kg and 3 kg blocks and (b) tension T_(1) and T_(2) .

For the system shown in figure, M=1kg m=0.2 kg, r=0.2m calculate (g=10m//s^(2)) (a). The linear acceleration of hoop, (b). The angular acceleration of the hoop of mass M and (c). The tension in the rope.

In figure shown if 2 kg block is moving at an acceleration 2 m//s^(2) , find the elongationin spring and acceleration of 4 kg block at this instant. Take g= 10m//s^(2) .

If the system is in equilibrum, find the Normal Reaction between 2kg and 4 kg blocks in Newton. (Take g = 10 m//sec^(2) )

The elevator shown in figure is descending with an acceleration of 2m/s^2 . The mass of the block A is 0.5 kg. What force is exerted by the block A on the block B?

Two blocks A and B of masses 10 kg and 5 kg respectively are placed inside a cart which is moving horizontally with an acceleration of 2 m/s^2 as shown in the figure. If all the surfaces are smooth then the ratio of normal reaction between the block A and vertical surface of the cart and normal reaction between the blocks A and B is

In the figure shown the man of mass 60kg is liftinga block of mass 10kg with an acceleration of 5m//s^(2) . Find reading of the machine.

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ALLEN-NEWTON'S LAWS OF MOTION & FRICTION-EXERCISE (O-1)
  1. A system is pushed by a force F as shown in figure All surfaces are sm...

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  2. Refer the system shown in the figure. Block is siding down the wedge. ...

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  3. A block of mass 1 kg is held at rest against a rough vertical surface ...

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  4. A block is kept on a rough horizontal surface as shown. Its mass is 2 ...

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  5. The mass in the figure can slide on a frictionless surface. When the m...

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  6. A carpenter of mass 50 kg is standing on a weighing machine placed in ...

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  7. In the system in the figure m(1)gtm(2) system is held at rest by threa...

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  8. A uniform rope of mass (m) and length (L) placed on frictionless horiz...

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  9. A uniform rope of mass (m) and length (L) placed on frictionless horiz...

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  10. A uniform rope of mass (m) and length (L) placed on frictionless horiz...

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  11. Ratio of amplitude for two wave is 1:5 .Find the ratio of maximum ampl...

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  12. The figure shown blocks A and B are mass 2 kg and 8 kg and they are co...

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  13. The figure shown blocks A and B are mass 2 kg and 8 kg and they are co...

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  14. Ratio of amplitude for two wave is 1:5.Find the ratio of maximum Inten...

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  15. The blocks are on frictionless inclined ramp and connected by a massle...

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  16. The blocks are on frictionless inclined ramp and connected by a massle...

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  17. The blocks are on frictionless inclined ramp and connected by a massle...

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  18. In the diamram shown in figure , match the following (g=10m//s^(2)) ...

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  19. Match the situations in column I to the accelerations of blocks in the...

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  20. A sphere of mass 10 kg is placed in equibrium in a V shaped groove pla...

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