In a Young's double slit experiment the intensity at a point where the path difference is λ6 (λ being the wavelength of the light used) is I. If I0 denotes the maximum intensity, II0 is equal to

1. 12

2. 32

3. 1/2

4. 3/4

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An optically active compound 

1. Rotates the plane polarised light

2. Changes the direction of polarised light

3. Does not allow plane polarised light to pass through

4. None of the above

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In a Young's experiment, the separation between the slits is 0.10 mm, the wavelength of light used is 600 nm and the interference pattern is observed on a screen 1.0 m away. Find the separation between the successive bright fringes.

1. 6.6 mm

2. 6.0 mm

3. 6 m

4. 6 cm.

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Intensities of the two waves of light are I and 4I. The maximum intensity of the resultant wave after superposition is 

1. 5I

2. 9I

3. 16I

4. 25I

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Two polaroids are placed in the path of unpolarized beam of intensity I0 such that no light is emitted from the second polaroid. If a third polaroid whose polarization axis makes an angle θ with the polarivation axis of first polaroid. is placed between these polaroids then the intensity of light emerging from the last polaroid will be 

1. I08sin22θ

2. I04sin22θ

3. I02cos4θ

4. I0cos4θ

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In the Young's double slit experiment using a monochromatic light of wavelength λ, the path difference (in terms of an integer n) corresponding to any point having half the peak intensity is 

1. (2n+1)λ2

2. (2n+1)λ4

3. (2n+1)λ8

4. (2n+1)λ16

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Young's double slit experiment is carried out by using green, red and blue light, one color at a time. The fringe widths recorded are βG, βR and βB , respectively. Then

1. βG>βB>βR

2. βB>βC>βR

3. βR>βB>βG

4. βR>βG>βB

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In a Young's double slit experiment, the fringe width is found to be 0.4 mm. If the whole apparatus is immersed in water of refractive index 4/3 without disturbing the geometrical arrangement, the new fringe width will be 

1. 0.30 mm

2. 0.40 mm

3. 0.53 mm

4. 450 micron

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Two light sources are said to be coherent if they are obtained from

1. Two independent point sources emitting light of the same wavelength

2. A single point source

3. A wide source

4. Two ordinary bulbs emitting light of different wavelengths

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In Young's experiment, monochromatic light is used to illuminate the two slits A and B. Interference fringes are observed on a screen placed in front of the slits. Now if a thin glass plate is placed nomally in the path of the beam coming from the slit

1. The fringes will disappear

2. The fringe width will increase

3. The fringe width will decrease

4. There will be no change in the fringe width but the pattern shifts

AIIMS - 1999
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