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In the given figure, the blocks of mass ...

In the given figure, the blocks of mass 2kg and 3kg are placed one over the other as shown.

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In the given figure, the blocks of mass 2 kg and 3 kg are placed one over the other as shown. The surface are rough with coefficient of friction mu_(1)=0.2, mu_(2)=0.06 . A force F=0.5t ( where 't' "in" sec ) is applied on upper block in the direction shown. Based on above data answer the following questions. ( g= 10m//sec^(2)) The motion of blocks 2 kg and 3 kg will begin at time t = -, - respectively

In the given figure, the blocks of mass 2 kg and 3 kg are placed one over the other as shown. The surface are rough with coefficient of friction mu_(1)=0.2, mu_(2)=0.06 . A force F=0.5t ( where 't' "in" sec ) is applied on upper block in the direction shown. Based on above data answer the following questions. ( g= 10m//sec^(2)) The frictional force acting between the two blocks at t=8 sec .

In the given figure, the blocks of mass 2 kg and 3 kg are placed one over the other as shown. The surface are rough with coefficient of friction mu_(1)=0.2, mu_(2)=0.06 . A force F=0.5t ( where 't' "in" sec ) is applied on upper block in the direction shown. Based on above data answer the following questions. ( g= 10m//sec^(2)) The relative slipping between the blocks occurs at t=

Two blocks A and B of masses 2kg and 4kg are placed one over the other as shown in figure. A time varying horizontal force F =2t is applied on the upper block as shown in figure. Here t is in second and F is in newton. Drow a graph showing acceleration of A and B on y-axis and time on x-axis.Coefficient of friction between A and B is mu =(1)/(2) and the horizontal surface over which B is placed smooth. (g =10m//s^(2))

Two blocks A and B of mass 2 kg and 4 kg are placed one over the others as shown in figure. A time vaying horizontal force F=2t is applied on the upper blocks as shown in figure. Here t is in second and F is in newton. Coefficient of friction between A and B is mu=(1)/(2) and the horizontal surface over which B is placed is smmoth. (g=10 m//s^(2)) . If acceleration of blocks A as a function of time is given by a_(A)=t//c then find value of c . (t le7.5s)

Three blocks of masses 3kg ,2kg and 1kg are placed side by side on a smooth surface as shown in figure. A horizontal force of 12N is applied on 3kg block. Find the net force on 2kg block.

Three blocked A,B and C are placed one over the other as shown in figure. Draw free body diagram of all the three blocks.

Three blocks of masses 2kg,3kg and 5kg are placed in contact as shown in the diagram. A horizontal force of 30N is applied on 2kg block. Find the contact force between (a) 2kg and 3kg block and (b) 3kg and 5kg block.

In the given figure, what will be acceleration of block of mass 7 kg?

Three blocks of masses m_(1) = 1kg, m_(2)=2kg and m_(3) = 3kg are placed in contact on a horizontal frictionaless plane as shown in figure. A force of 12 N is applied on m_(1) . Acceleration of the system is

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