A force \(F\) is needed to break a copper wire having radius \(R.\) The force needed to break a copper wire of radius \(2R\) will be:

1. \(F/2\) 2. \(2F\)
3. \(4F\) 4. \(F/4\)

Subtopic:  Stress - Strain |
 73%
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A and B are two wires of same material. The radius of A is twice that of B. They are stretched by the same load. Then the stress on B is

(1) Equal to that on A

(2) Four times that on A

(3) Two times that on A               

(4) Half that on A

Subtopic:  Young's modulus |
 78%
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If the length of a wire is reduced to half, then it can hold the ......... load

(1) Half                                 

(2) Same

(3) Double                             

(4) One fourth

Subtopic:  Stress - Strain |
From NCERT
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Two wires of copper having length in the ratio of 4: 1 and radii ratio of 1: 4 are stretched by the same force. The ratio of longitudinal strain in the two will be:
1. 1: 16                                             
2. 16: 1
3. 1: 64                                             
4. 64: 1

Subtopic:  Hooke's Law |
 62%
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The force constant of a wire does not depend on

(1) Nature of the material                     

(2) Radius of the wire

(3) Length of the wire                           

(4) None of the above

Subtopic:  Young's modulus |
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In steel, the Young's modulus and the strain at the breaking point are 2×1011Nm-2 and 0.15 respectively. The stress at the breaking point for steel is therefore -

(1) 1.33×1011Nm-2           

(2) 1.33×1012Nm-2

(3) 7.5×10-13Nm-2           

(4) 3×1010Nm-2

Subtopic:  Young's modulus |
 82%
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Which one of the following quantities does not have the unit of force per unit area?

1. Stress                                      

2. Strain

3. Young's modulus of elasticity

4. Pressure

Subtopic:  Stress - Strain |
 85%
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How much force is required to produce an increase of 0.2% in the length of a brass wire of diameter 0.6 mm ?

(Young’s modulus for brass = 0.9×1011N/m2)

(a) Nearly 17 N                        (b) Nearly 34 N

(c) Nearly 51                        (d) Nearly 68 N

Subtopic:  Young's modulus |
 65%
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The extension of a wire by the application of load is 3 mm. The extension in a wire of the same material and length but half the radius by the same load is -

(1) 12 mm                                 

(2) 0.75 mm

(3) 15 mm

(4) 6 mm

Subtopic:  Young's modulus |
 77%
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The isothermal elasticity of a gas is equal to

(1) Density                                     

(2) Volume

(3) Pressure                                    

(4) Specific heat

Subtopic:  Stress - Strain |
 65%
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