Home
Class 12
PHYSICS
[" The maximum value of mass of biock "C...

[" The maximum value of mass of biock "C" so that neither A nor "8],[" moves is (Given that mass of A is "100" kg and that of "B" is "140],[" kg.Pulleys are smooth and friction coefficient between "A" and "B],[" and between "B" and horizontal surface is "psi=0.3)g=10m/s],[[" (A) "210kg," (B) "190kg],[" (C) "185kg," (D) "162kg]]

Promotional Banner

Similar Questions

Explore conceptually related problems

The maximum value of mass of block C so that neither A nor B moves is (given that mass of A is 100 kg and the of B 140 kg . Pulleys are smooth and friction coefficient between A and B and horizontal surface mu = 0.3) (Taking g = 10 ms^(-2))

The maximum value of mass of block C so that neither A nor B moves is (given that mass of A is 100 kg and the of B 140 kg . Pulleys are smooth and friction coefficient between A and B and horizontal surface mu = 0.3) (Taking g = 10 ms^(-2))

The mass of block A is 100 kg and that of block B is 200 kg. The coefficient of friction between A and B is 0.2 and that between B and ground level is 0.3. The minimum force which will make the block B move, will be:

Measles of A and B 10 kg and 5 kg respectively.y A is on smooth surface coefficient of friction between A and B is 0.4 if F = 75 N friction between the block is "__" N.

In the show arrangement mass of A=1 kg, mass of B= 2kg. Coefficient of friction between A and B =0.2 There is no friction between B and ground. The frictional force exerted by A on B equals.

In the show arrangement mass of A=1 kg, mass of B= 2kg. Coefficient of friction between A and B =0.2 There is no friction between B and ground. The frictional force exerted by A on B equals.

In the system of connecting blocks, m_(A) =1kg, m_(B)=2kg and m_(C)=2kg .The inclined plane is smooth while the friction coefficient between block B and horizontal ground is mu .Mark the correct options.(g=10m s^(-2) )

There are two block as shown in the figure of masses 1kg and 4kg . Friction coefficient between any two surfaces are 0.2 then find maximum value of horizontal force F so that both blocks moves together.