There is no change in the volume of a wire due to change in its length on stretching. The Poisson's ratio of the material of the wire is

1. + 0.50                               

2.  – 0.50

3.  0.25                                  

4.  – 0.25

Subtopic:  Poisson's Ratio |
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The force required to stretch a steel wire of cross-section 1 cm2 to 1.1 times its length would be Y=2×1011 Nm-2

1. 2×106N                               

2. 2×103N

3. 2×10-6N                             

4. 2×10-7N

Subtopic:  Young's modulus |
 76%
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The ratio of two specific heats of gas Cp/Cv for argon is 1.6 and for hydrogen is 1.4. Adiabatic elasticity of argon at pressure P is E. Adiabatic elasticity of hydrogen will also be equal to E at the pressure :

1. P                                       

2. 87P

3. 78P                                   

4. 1.4P

Subtopic:  Specific Heat |
 59%
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A fixed volume of iron is drawn into a wire of length L. The extension x produced in this wire by a constant force F is proportional to:

1. 1L2                                             

2. 1L

3. L2                                               

4. L

Subtopic:  Hooke's Law |
 53%
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The length of an elastic string is a metre when the longitudinal tension is 4 N and b metre when the longitudinal tension is 5 N. The length of the string in metre when the longitudinal tension is 9 N is

1. a - b                                             

2. 5b - 4a

3. 2b -14a                                       

4. 4a - 3b

Subtopic:  Young's modulus |
 78%
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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)

1. Nearly 17 N                       
2  Nearly 34 N
3. Nearly 51                        
4. Nearly 68 N

Subtopic:  Young's modulus |
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A 5 m long aluminium wire Y=7×1010N/m2 of diameter 3 mm supports a 40 kg mass. In order to have the same elongation in a copper wire Y=12×1010N/m2 of the same length under the same weight, the diameter of the copper wire should be, in mm:

1. 1.75                                  
2. 1.5
3. 2.5                                   
4. 5.0

Subtopic:  Young's modulus |
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A steel wire of 1 m long and  cross section area 1 mm2 is hang from rigid end. When mass of 1kg is hung from it then change in length will be: (given Y=2×1011N/m2)

1. 0.5 mm                             

2. 0.25 mm

3. 0.05 mm                           

4. 5 mm

Subtopic:  Young's modulus |
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An iron rod of length 2m and cross section area of 50 X 10-6 m2 , is stretched by 0.5 mm, when a mass of 250 kg is hung from its lower end. Young's modulus of the iron rod is-

1. 19.6×1010N/m2                         

2. 19.6×1015N/m2

3. 19.6×1018N/m2                         

4. 19.6×1020N/m2

Subtopic:  Young's modulus |
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In which case, there is a maximum extension in the wire, if the same force is applied on each wire?

1. L = 500 cm, d = 0.05 mm

2. L = 200 cm, d = 0.02 mm

3. L = 300 cm, d = 0.03 mm

4. L = 400 cm, d = 0.01 mm

Subtopic:  Hooke's Law |
 70%
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