Home
Class 12
PHYSICS
A small block of mass 'm' is kept on the...

A small block of mass `'m'` is kept on the smooth inclined plane of angle `37^@)`, placed in an elevator going upward with acceleration `a=g/3`, as shown in the figure. A horizontal electric field `E` perpendicular to the left and right vertical wall of the elevator exists. The charge on the block is `+q`. Find the time (in sec) when the block collide with the vertical wall. (take `g=10m//s^(2)` and `(qE)/m=25m//s^(2)`)

Text Solution

Verified by Experts

The correct Answer is:
1

F.B.D of block
`a_("net")=12m//s^(2)` , up the incline plane
`S="ut"+1/2"gt"^(2)`
`3.6xx5/3=1/2xx12xxt^(2)`
`impliest=1`sec
Promotional Banner

Similar Questions

Explore conceptually related problems

A block slides down from top of a smooth inclined plane of elevation ● fixed in an elevator going up with an acceleration a_(0) The base of incline hs length L Find the time taken by the block to reach the bottom .

A block of mass m having a charge q is placed on a smooth horizontal table and is connected to a wall through an unstressed spring of spring constant k as shown in figure(29.E1) . A horizontal electric field E parallel to the spring is switched on. Find the amplitude of the resulting SHM of the block.

A block of mass 2kg released from the top of a smooth fixed wedge inside the elevator which is moving downward with an acceleration a = 5 m/s^2 as shown in the figure.The value of acceleration of the block w.r.t wedge will be (g = 10 m/s^2)

A horizontal force F is applied to a block of mass m on a smooth fixed inclined plane of inclination theta to the horizontal as shown in the figure. Resultant force on the block up the plane is:

A block can slide along incline plane as shown in figure. The acceleration of chamber is ( 2)/( sqrt( 3))g m//s^(2) horizontally as shown. Find the time when the block collide with the vertical wall AB of the chamber ( take g = 10 m//s^(2) )

A block of mass 2 kg rests on an inclined plane of inclination angle 37^(@) , then calculate the force of friction acting on the block [ take g = 10 m//s^(2))

A block is placed on a smooth inclined plane at an angle 'theta' to the horizontal. The acceleration must the plane be moved horizontally so that the block to fall freely is

A block of mass m is placed on a smooth inclined plane of inclination theta with the horizontal. The force exerted by the plane on the block has a magnitude

A block of mass m is placed on a smooth inclined plane of inclination theta with the horizontal. The force exerted by the plane on the block has a magnitude

A small block of mass 1 kg is kept on a rough inclined wedge of inclination 45^@ fixed in an elevator. The elevator goes up with a uniform velocity v=2 m//s and the block does not slide on the wedge. Find the work done by the force of friction on the block in 1s . (g=10 m//s^(2))