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 Multiple Choice QuestionsMultiple Choice Questions

61.

The maximum number of possible interference maxima for slit-separation equal to twice the wavelength in Young's double slit experiment is

  • infinite

  • five

  • three

  • zero


62.

A wire can be broken by applying load of 200 N. The force required to break another wire of the same length and same material, but double in diameter is

  • 200 N

  • 400 N

  • 600 N

  • 800 N


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63.

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

  • 2 × 109 Nm-2

  • 4 × 109 Nm-2 

  • 8 × 109 Nm-2

  • 16 × 109 Nm-2


A.

2 × 109 Nm-2

Shearing modulus of cube

       η = F lAl

       η = 8 × 103 × 40 ×10-340 × 10-32 ×0.1 × 10-3 

        η = 2 × 109 N m-2


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64.

If Young's double slit experiment is performed i water instead of air, then

  • no fringes would be seen

  • fringe width would decrease

  • fringe width would increase

  • fringe width would remain unchanged


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65.

In Young's double slit experiment with sodium vapour lamp of wavelength 589 nm and the slits 0.589 mm apart, the half angular width of the central maximum is

  • sin-1 (0.01)

  • sin-1 (0.0001)

  • sin-1 (0.001)

  • sin-1 (0.1)


66.

The Bulk modulus for an incompressible liquid is

  • zero

  • unity

  • infinity

  • between O and 1


67.

In Young's double slit experiment with sodium vapour lamp of wavelength 589 nm and the slits 0.589 mm apart, the half angular width of the central maximum is

  • sin-1 (0.01)

  • sin-1 (0.0001)

  • sin-1 (0.001)

  • sin-1 (0.1)


68.

If the ratio of lengths, radii and Young's modulus of steel and brass wires shown in the figure are a, b Brass and c respectively, the ratio between the increase in lengths of brass and steel wires would

                  


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69.

A steel wire of 1 m long and l mm2 cross-section area is hanged from rigid end when weight of 1 kg is hang from it, then change in length will be

(Young's coefficient for wire Y = 2 x 1011 N/m2 )

  • 0.5 mm

  • 0.25 mm

  • 0.05 mm

  • 5 mm


70.

What is the change in the volume of 1.0 L kerosene, when it is subjected to an extra pressure of 2.0 x 105 Nm-2 from the following data? Density of kerosene = 800 kg m-3  and speed of sound in kerosene= 1330 ms-1.

  • 0.97 cm-3

  • 0.66 cm-3

  • 0.15 cm-3

  • 0.59 cm-3


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