Home
Class 11
PHYSICS
A 0.05 m cube has its upper face displac...

A `0.05 m` cube has its upper face displaced by `0.2 cm` by a tangential force of `8N`. Calculate the shearing strain, shearing stress and modulus of rigidity of the material of the cube.

Text Solution

AI Generated Solution

To solve the problem step by step, we will calculate the shearing strain, shearing stress, and modulus of rigidity of the cube. ### Step 1: Calculate Shearing Strain Shearing strain (γ) is defined as the ratio of the displacement (change in position) to the original length. Given: - Displacement (Δx) = 0.2 cm = 0.2 × 10^-2 m = 0.002 m - Original length (L) = 0.05 m ...
Promotional Banner

Topper's Solved these Questions

  • PROPERTIES OF SOLIDS AND FLUIDS

    CENGAGE PHYSICS ENGLISH|Exercise Solved Examples|11 Videos
  • PROPERTIES OF SOLIDS AND FLUIDS

    CENGAGE PHYSICS ENGLISH|Exercise Exercise 5.1|12 Videos
  • NEWTON'S LAWS OF MOTION 2

    CENGAGE PHYSICS ENGLISH|Exercise Integer type|1 Videos
  • RIGID BODY DYNAMICS 1

    CENGAGE PHYSICS ENGLISH|Exercise Integer|11 Videos

Similar Questions

Explore conceptually related problems

A 4 cm cube has its upper face displaced by 0.1 mm by a tangential force of 8 kN. Calculate the shear modulus of the cube.

A cube of side 40 cm has its upper face displaced by 0.1 mm by a tangential force of 8 Kn. The shearing modulus of cube is :-

A metallic cube whose each side is 10 cm is subjected to a shearing force of 100 kgf. Calculate the shearing produced.

A rubber cube of side 5 cm has one side fixed while a tangential force equal to 1800 N is applied to opposite face. Find the shearing strain and the lateral displacement of the strained face. Modulus of rigidity for rubber is 2.4 xx 10^(6) N//m^(2) .

One of the square faces of a metal slab of side 50 cm and thickness 20 cm is rigidly fixed on a horizontal surface. If a tangential force of 30 N is applied to the top face and it is known that the shear modulus of the material is 4 xx 10^(10) N//m^(2) , then the displacement (in m) of the top face is

A cube of soft rubber of face area 0.02 m^(2) whose lower face is fixed is sheared through an angle 2^(@) by a force of 10^(4) N acting tangential to the upper face. Calculate the rigidity modulus of the material.

A shearing force of 10^(6) N is applied on the top surface of a fixed cube of side 10 cm. If the top surface is displaced by 0.33 mm, find rigidity modulus of the material of the cube.

A force Fis tangentially applied on the upper face of a cube of side b and whose lower face is fixed. If modulus of rigidity is n then upper surface of cube is shifted to

An cube is shifted to a depth of 100 m is a lake. The change in volume is 0.1% . The bulk modulus of the material is

(a) A wire 4 m long and 0.3 mm, calculate the potential energy stored in the wire. Young's modulus for the material of wire is 2.0xx10^(11) N//m^(2) .