Home
Class 11
PHYSICS
Two block of masses m =5kg and M =10kg a...

Two block of masses `m =5kg and M =10kg` are connected by a string passing over a pulley `B` as shown. Another string connect the center of pulley `B` to the floor and passes over another pulley `A` as shown. An upwards force `F` is applied at the center of pulley `A`. Both the pulleys are massless.
Find the acceleration of block `m` and `M`, if `F` is
(a) `100N`
`300N`
`500N(Take g = 10m//s^(2))`

Promotional Banner

Similar Questions

Explore conceptually related problems

Two block of masses m =5kg and M =10kg are connected by a string passing over a pulley B as shown. Another string connect the center of pulley B to the floor and passes over another pulley A as shown. An upwards force F is applied at the center of pulley A . Both the pulleys are massless. Find the acceleration of block m and M , if F is (a) 100N (b)300N (c)500N(Take g = 10m//s^(2))

Two blocks of masses of 40 kg and 30 kg are connected by a weightless string passing over a frictionless pulley as shown in the figure.

Two blocks of masses of 40 kg and 30 kg are connected by a weightless string passing over a frictionless pulley as shown in the figure.

Two masses m and M(m lt M) are joined by a light string passing over a smooth and light pulley (as shown)

Two blocks of masses 3 kg and 6 kg are connected by a string as shown in the figure over a frictionless pulley. The acceleration of the system is

Two masses m_(1) and m_(2) are connected to the ends of string passing over a pulley. Find the tension and the acceleration associated.

Two blocks A and B , each of mass 10 kg , are connected by a light string passing over a smooth pulley as shown in the figure. Block A will remain at rest if the friction on it is

Two masses of 10 kg and 20 kg are connected with an inextensible string passing over two smooth pulleys as shown in the figure. The acceleration of 20 kg mass will be :

Two masses of 10 kg and 20 kg are connected with an inextensible string passing over two smooth pulleys as shown in the figure. The acceleration of 20 kg mass will be :