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HSC Science (Electronics) १२ वीं कक्षा - Maharashtra State Board Important Questions

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In biprism experiment two interfering waves are produced due to division of _______.

Appears in 1 question paper
Chapter: [11] Interference and Diffraction
Concept: Measurement of Wavelength by Biprism Experiment

Give any ‘two’ points of differences between diamagnetic and ferromagnetic substances.

Appears in 1 question paper
Chapter: [11] Magnetic Materials
Concept: Magnetic Properties of Materials

In a biprism experiment, when a convex lens was placed between the biprism and eyepiece at a distance of 30 cm from the slit, the virtual images of the slits are found to be separated by 7 mm. If the distance between the slit and biprism is 10 cm and between the biprism and eyepiece is 80cm, find the linear magnification of the image.

Appears in 1 question paper
Chapter: [11] Interference and Diffraction
Concept: Measurement of Wavelength by Biprism Experiment

A parallel beam of monochromatic light is incident on a glass slab at an angle of incidence 60o. Find the ratio of width of the beam in the glass to that in the air if refractive index of glass is 3/2.

Appears in 1 question paper
Chapter: [11] Interference and Diffraction
Concept: Interference of Light

In a single slit diffraction pattern, the distance between first minima on the right and first minima on the left of central maximum is 4 mm. The screen on which the pattern is displaced, is 2m from the slit and wavelength of light used is 6000Å. Calculate width of the slit and width of the central maximum.

Appears in 1 question paper
Chapter: [11] Interference and Diffraction
Concept: Fraunhofer Diffraction Due to a Single Slit

The co-efficient of reflection of an opaque body is 0.16. Its co-efficient of emission is ........................................

  1. 0.94
  2. 0.84
  3. 0.74
  4. 0.64
Appears in 1 question paper
Chapter: [11] Interference and Diffraction
Concept: Interference of Light

In a biprism experiment, a slit is illuminated by a light of wavelength 4800 Å The distance between the slit and biprism is 15 cm and the distance between the biprism and eyepiece is 85 cm. If the distance between virtual sources is 3 mm, determine the distance between 4th bright band on one side and 4th dark band on the other side of the central bright band.

Appears in 1 question paper
Chapter: [11] Interference and Diffraction
Concept: Measurement of Wavelength by Biprism Experiment

State the conditions to get steady interference pattern.

Appears in 1 question paper
Chapter: [11] Interference and Diffraction
Concept: Interference of Light

A red light of wavelength 6400A° in air has wavelength 4000A° in glass. If the wavelength of violet light in air is 4400A°, find its wavelength in glass.

(Assume that μ≈ μv)

Appears in 1 question paper
Chapter: [11] Interference and Diffraction
Concept: Measurement of Wavelength by Biprism Experiment

The magnetic moment of a magnet of dimensions 5 cm × 2.5 cm × 1.25 cm is 3 Am2. Calculate the intensity of magnetization.

Appears in 1 question paper
Chapter: [11] Magnetic Materials
Concept: Magnetisation and Magnetic Intensity

The susceptibility of magnesium at 200 K is 1.8 x 10-5. At what temperature will the susceptibility decrease by 6 x 10-6?

Appears in 1 question paper
Chapter: [11] Magnetic Materials
Concept: Magnetic Properties of Materials

In the diffraction pattern due to a single slit of width 'd' with incident light of wavelength 'λ', at an angle of  diffraction θ. the condition for first minimum is ....

(a)`lambda sin theta =d`

(b) `d costheta =lambda`

(c)`d sintheta=lambda`

(d) `lambda cos theta=d`

Appears in 1 question paper
Chapter: [11] Interference and Diffraction
Concept: Fraunhofer Diffraction Due to a Single Slit

A point is situated at 7cm and 7·2 cm from two coherent sources. Find the· nature of illumination at the point if wavelength of light is 4000A.

Appears in 1 question paper
Chapter: [11] Interference and Diffraction
Concept: Fraunhofer Diffraction Due to a Single Slit

In Young' s experiment the ratio of intensity at the maxima and minima . in the interference pattern is 36 : 16. What is the ratio of the widths of the two slits?

Appears in 1 question paper
Chapter: [11] Interference and Diffraction
Concept: Interference of Light Waves and Young’s Experiment

Describe biprism experiment to find the wavelength of monochromatic light. Draw the necessary ray diagram for magnified and diminished images of virtual sources.

Appears in 1 question paper
Chapter: [11] Interference and Diffraction
Concept: Measurement of Wavelength by Biprism Experiment

The resolving power of telescope of aperture 100 cm for light of wavelength 5.5 x 10-7 m is _______________.

Appears in 1 question paper
Chapter: [11] Interference and Diffraction
Concept: Resolving Power of a Microscope and Telescope

The width of plane incident wavefront is found to be doubled on refraction in denser medium. If it makes an angle of 65° medium. with the normal, calculate the refractive index for the denser medium.

Appears in 1 question paper
Chapter: [11] Interference and Diffraction
Concept: Measurement of Wavelength by Biprism Experiment

Find the magnetization of a bar magnet of length 10 cm and cross-sectional area 4 cm2, if the magnetic moment is 2 Am2.

Appears in 1 question paper
Chapter: [11] Magnetic Materials
Concept: Magnetisation and Magnetic Intensity

Using monochromatic light of wavelength λ in Young’s double slit experiment, the eleventh dark fringe is obtained on the screen for a phase difference of ______.

Appears in 1 question paper
Chapter: [11] Interference and Diffraction
Concept: Interference of Light Waves and Young’s Experiment

A parallel beam of light travelling in water is incident obliquely on a glass surface. After refraction its width ..............

a) decreases

b) increases

c) remains the same

d) becomes zero

Appears in 1 question paper
Chapter: [11] Interference and Diffraction
Concept: Interference of Light
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