Home
Class 11
PHYSICS
In the arrangement shown in figure , fin...

In the arrangement shown in figure , find the retio of tension in the strings attached with `4kg` block and the with `1kg` block

Text Solution

Verified by Experts

`T_(4) = 4g` and `T_(1) = (1)g` as `a = 0`
`(T_(4))/(T_(1)) = 4`
Doubtnut Promotions Banner Mobile Dark
|

Topper's Solved these Questions

  • LAWS OF MOTION

    DC PANDEY|Exercise Exercise 8.3|8 Videos
  • LAWS OF MOTION

    DC PANDEY|Exercise Exercise 8.4|3 Videos
  • LAWS OF MOTION

    DC PANDEY|Exercise Exercise 8.1|10 Videos
  • KINEMATICS 1

    DC PANDEY|Exercise INTEGER_TYPE|15 Videos
  • LAWS OF THERMODYNAMICS

    DC PANDEY|Exercise Level 2 Subjective|18 Videos

Similar Questions

Explore conceptually related problems

In the system shown in figure, the block A is released from rest. Find Tension in the string.

Three block of masses 1kg,4 kg and 2 kg are placed on a smooth horizontal plane as shown in figure. Find (a) the acceleration of the system, (b) the normal force between 1kg block and 4 kg block, ( c) the net force on 2kg block

Knowledge Check

  • Consider the arrangement shown in the figure. The coefficient of friction between the two blocks is 0.5 and between the 4 kg block and the horizontal surface is 0.4. If a horizontal force of 12 N is applied on the 4 kg block, the acceleration of the 2 kg block would be

    A
    `2.5m//s^(2)`
    B
    `2m//s^(2)`
    C
    `5m//s^(2)`
    D
    zero
  • In the system shown in the figure, the acceleration of 1 kg block is

    A
    `(g)/(2)` downwards
    B
    `(g)/(2)` upwards
    C
    `(g )/(4)` downwards
    D
    `(g)/(4)` upwards
  • In the arrangement shown in figure, the string are light and intextensible. The surface over which blocks are placed is smooth. Find (a) the accelrations of the block (b) the tension in each string.

    A
    `a = 8 m//s^2` , `T_1=12 N`, `T_2 = 12N`
    B
    `a = 4 m//s^2` , `T_1=12 N`, `T_2 = 8N`
    C
    `a = 4 m//s^2` , `T_1=24 N`, `T_2 = 8N`
    D
    `a = 4 m//s^2` , `T_1=24 N`, `T_2 = 24N`
  • Similar Questions

    Explore conceptually related problems

    Two blocks with masses m_(1) = 0.2 kg and m_(2) = 0.3 kg hang one under other as shown in figure. Find the tensions in the strings (massless) in the following situations : (g = 10 m//s^(2)) the blocks are at rest

    In the arrangement shown in figure. The strings are light and inextensible. The surface over which block are placed is smooth.Find (a) the acceleration of each block, (b) the tension in each string.

    Three blocks of masses 6 kg, 4 kg and 2 kg are pulled on a rough surface by applying a constant force 20 N. The values of coefficient of friction between blocks and suface are shown in figure. Q. In the arrangement shoen tension in the string connecting 4 kg and 6 kg masses is

    In the arrangement shown, the 2 kg block is held to keep the system at rest. The string and pulley are ideal. When the 2kg block is set free, by what amount the tension in the string changes? [g=10m//s^(2)]

    A system is at rest as shown in figure. The tension in the string in T_(1) . When the 2 kg block is removed, the system moves with some acceleration a and tension in string becomes T_(2) Find T_(1)//T_(2) .