Chapter 32 – Ray Optics
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Two slits in Young’s experiment have widths in the ratio 1 : 25. The ratio of intensity at the maxima and minima in the interference pattern, Imax / Imin is
21
Aug
Two slits in Young’s experiment have widths in the ratio 1 : 25. The ratio of intensity at the maxima and minima in the interference pattern, Imax / Imin is Imax / Imin is Two slits in Young's experiment have widths in the ratio 1 : 25. The ratio of intensity at the maxima and [...]
In a double slit experiment, the two slits are 1 mm apart and the screen is place 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 single slit pattern?
21
Aug
In a double slit experiment, the two slits are 1 mm apart and the screen is place 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 single slit pattern? a point on [...]
In a Young’s double slit experiment, if there is no initial phase difference between the light from the two slits, a point on the screen corresponding to the fifth minimum has path difference
21
Aug
In a Young’s double slit experiment, if there is no initial phase difference between the light from the two slits, a point on the screen corresponding to the fifth minimum has path difference a point on the screen corresponding to the fifth minimum has path difference if there is no initial phase difference between the [...]
The interference pattern is obtained with two coherent light source of intensity ratio n. In the interference pattern, the ratio (Imax – Imin) / (Imax + Imin) will be
21
Aug
The interference pattern is obtained with two coherent light source of intensity ratio n. In the interference pattern, the ratio (Imax – Imin) / (Imax + Imin) will be The interference pattern is obtained with two coherent light source of intensity ratio n. In the interference pattern the ratio (Imax - Imin) / (Imax + [...]
In Young’s double slit experiment the separation d between the slits is 2mm, the wavelength λ of light used is 5896 A and distance D between the screen and slits is 100 cm. It is found that the angular width of the fringes is 0.20 degree. To increase the fringe angular width to 0.21 degree (with same λ and D) the separation between the slits needs to be changed to
21
Aug
In Young’s double slit experiment the separation d between the slits is 2mm, the wavelength λ of light used is 5896 A and distance D between the screen and slits is 100 cm. It is found that the angular width of the fringes is 0.20 degree. To increase the fringe angular width to 0.21 degree [...]
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In a diffraction pattern due to a single slit of width a ,
In Young's double slit experiment the separation d between the slits is 2mm ,
the first minimum is observed at an angle 30 degree∘ when light of wavelength 5000 Å is incident on the slit. The first secondary minimum is observed at an angle of ,
The intensity at the maximum in a Young’s double slit experiment is I0. Distance between two slits is d=5λ, where λ is the wavelength of light used in the experiment. What will be that intensity in front of one of the slit on the screen placed at a distance at a distance D=10 d ?
21
Aug
The intensity at the maximum in a Young’s double slit experiment is I0. Distance between two slits is d=5λ, where λ is the wavelength of light used in the experiment. What will be that intensity in front of one of the slit on the screen placed at a distance at a distance D=10 d ? [...]
Young’s double slit experiment is first performed in air and then in a medium other than air. It is found that 8th bright fringe in the medium lies where 5th dark fringe lies in air. The refractive index of the medium is nearly
21
Aug
Young’s double slit experiment is first performed in air and then in a medium other than air. It is found that 8th bright fringe in the medium lies where 5th dark fringe lies in air. The refractive index of the medium is nearly In a diffraction pattern due to a single slit of width a [...]
Angular width of central maxima in the Fraunhoffer diffraction pattern of a slit is measured. The slit is illuminated by light of wavelength 6000Å. When the slit is illuminated by light of another wavelength, the angular width decreases by 30%. The wavelength of this light will be
20
Aug
Angular width of central maxima in the Fraunhoffer diffraction pattern of a slit is measured. The slit is illuminated by light of wavelength 6000Å. When the slit is illuminated by light of another wavelength, the angular width decreases by 30%. The wavelength of this light will be In a diffraction pattern due to a single [...]
A beam of light of wavelength 600 nm from a distant source falls on a single slit 1.0 mm wide and the resulting diffraction pattern is observed on a screen 2m away. What is the distance between the first dark fringe on either side of the central bright fringe?
20
Aug
A beam of light of wavelength 600 nm from a distant source falls on a single slit 1.0 mm wide and the resulting diffraction pattern is observed on a screen 2m away. What is the distance between the first dark fringe on either side of the central bright fringe? In a diffraction pattern due to [...]
At the first minimum adjacent to the central maximum of a single-slit diffraction pattern the phase difference between the Huygens wavelet from the edge of the slit and the wavelet from the mid-point of the slit is
20
Aug
At the first minimum adjacent to the central maximum of a single-slit diffraction pattern the phase difference between the Huygens wavelet from the edge of the slit and the wavelet from the mid-point of the slit is In a diffraction pattern due to a single slit of width a the first minimum is observed at [...]