A linear aperture whose width is 0.02 cm is placed immediately in front of a lens of focal length 60 cm. The aperture is illuminated normally by a parallel beam of wavelength 5×10-5 cm. The distance of the first dark band of the diffraction pattern from the centre of the screen is

(1) 0.10 cm             

(2) 0.25 cm 

(3) 0.20 cm             

(4) 0.15 cm

Subtopic:  Diffraction |
 64%
NEET - 2016
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The intensity at the maximum in Young's double-slit experiment is I0 when the distance between two slits is d=5λ, where λ is the wavelength of light used in the experiment. What will be the intensity in front of one of the slits on the screen placed at a distance D= 10 d?

(1) I04               

(2) 34I0

(3) I02             

(4) I0

Subtopic:  Young's Double Slit Experiment |
 54%
NEET - 2016
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In a diffraction pattern due to a single slit of width a,the first minimum is observed at an angle 30 when light of wavelength 5000 A˙ is incident on the slit. The first secondary maximum is observed at an angle of 

(a) sin-123           (b) sin-112

(c) sin-134           (d) sin-114

Subtopic:  Diffraction |
 65%
From NCERT
NEET - 2016
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For a parallel beam of monochromatic light of wavelength diffraction is produced by a single slit whose width 'a' is of the order of the wavelength of the light. If 'D' is the distance of the screen from the slit, the width of the central maxima will be

(1)2Dλ/a

(2)Dλ/a

(3)Da/λ

(4)2Da/λ

Subtopic:  Diffraction |
 79%
From NCERT
NEET - 2015
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In a double-slit experiment, the two slits are 1 mm apart and the screen is placed 1 m away. A monochromatic light of wavelength 500 nm is used. What will be the width of each slit for obtaining ten maxima of double-slit within the central maxima of a single-slit pattern?

1. 0.2 mm

2. 0.1 mm

3. 0.5 mm

4. 0.02 mm

Subtopic:  Young's Double Slit Experiment |
From NCERT
NEET - 2015
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Two slits in Young's experiment have widths in the ratio of \(1:25\). The ratio of intensity at the maxima and minima in the interference pattern \(\frac{I_{\text{max}}}{I_{\text{min}}}\) is:
1. \(\dfrac{9}{4}\) 2. \(\dfrac{121}{49}\)
3. \(\dfrac{49}{121}\) 4. \(\dfrac{4}{9}\)
Subtopic:  Young's Double Slit Experiment |
 75%
From NCERT
NEET - 2015
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At the first minimum adjacent to the central maximum of a single slit diffraction pattern, the phase difference between the Huygen's wavelet from the edge of the slit and the wavelet from the midpoint of the slit is

(1) π/4 radian

(2) π/2 radian

(3) π radian

(4) π/8 radian

Subtopic:  Diffraction |
 56%
From NCERT
NEET - 2015
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A beam of light of 600 nm from a distant source falls on a single slit 1 mm wide and the resulting diffraction pattern is observed on a screen 2 m away. The distance between first dark fringes on either side of the central bright fringe is
                      
1. 1.2cm

2. 1.2mm

3. 2.4cm

4. 2.4mm

Subtopic:  Diffraction |
 59%
From NCERT
NEET - 2014
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In the Young's double-slit experiment, the intensity of light at a point on the screen (where the path difference is λ ) is K where λ being the wavelength of light used. The intensity at a point where the path difference is λ /4 will be 

(1) K

(2) K/4

(3) K/2

(4) zero

Subtopic:  Young's Double Slit Experiment |
 63%
From NCERT
NEET - 2014
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In Young’s double slit experiment. the slits are 2 mm apart and are illuminated by photons of two wavelengths , λ1= 12000Å and , λ2= 10000Å. At what minimum distance from the common central bright fringe on the screen 2m from the slit will a bright fringe from one interference pattern coincide with a bright fringe from the other?

(a) 8mm

(b) 6mm

(c) 4 mm

(d) 3mm

Subtopic:  Young's Double Slit Experiment |
 75%
From NCERT
NEET - 2013
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