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2: Mechanical Properties of Fluids
3: Kinetic Theory of Gases and Radiation
4: Thermodynamics
5: Oscillations
6: Superposition of Waves
▶ 7: Wave Optics
8: Electrostatics
9: Current Electricity
10: Magnetic Fields due to Electric Current
11: Magnetic Materials
12: Electromagnetic induction
13: AC Circuits
14: Dual Nature of Radiation and Matter
15: Structure of Atoms and Nuclei
16: Semiconductor Devices
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Solutions for Chapter 7: Wave Optics
Below listed, you can find solutions for Chapter 7 of Maharashtra State Board Balbharati for Physics [English] 12 Standard HSC Maharashtra State Board.
Balbharati solutions for Physics [English] 12 Standard HSC Maharashtra State Board 7 Wave Optics Exercises [Pages 184 - 185]
Choose the correct option:
Which of the following phenomenon proves that light is a transverse wave?
Reflection
Interference
Diffraction
Polarization
Which property of light does not change when it travels from one medium to another?
Velocity
Wavelength
Amplitude
Frequency
When unpolarized light is passed through a polarizer, its intensity ______.
Increases
Decreases
Remain unchanged
Depends on the orientation of the polarize
Choose the correct option:
In Young's double-slit experiment, the two coherent sources have different intensities. If the ratio of the maximum intensity to the minimum intensity in the interference pattern produced is 25 : 1, what is the ratio of the intensities of the two sources?
5:1
25:1
3:2
9:4
Choose the correct option:
In Young's double-slit experiment, a thin uniform sheet of glass is kept in front of the two slits, parallel to the screen having the slits. The resulting interference pattern will satisfy:
The interference pattern will remain unchanged
The fringe width will decrease
The fringe width will increase
The fringes will shift
What are primary and secondary sources of light?
What is wavefront? How is it related to rays of light? What is the shape of the wavefront at a point far away from the source of light?
Why are multiple colours observed over a thin film of oil floating on water? Explain with the help of a diagram.
Answer in brief:
In Young's double-slit experiment what will we observe on the screen when white light is incident on the slits but one slit is covered with a red filter and the other with a violet filter? Give reasons for your answer.
Answer in brief:
Explain what is the optical path length. How is it different from actual path length?
Derive the laws of reflection of light using Huygens’ principle.
Answer in brief:
Explain what is meant by polarization and derive Malus’ law.
What is Brewster’s law? Derive the formula for Brewster angle.
Describe Young's double-slit interference experiment and derive conditions for occurrence of dark and bright fringes on the screen. Define fringe width and derive a formula for it.
What are the conditions for obtaining a good interference pattern? Give reasons.
Answer in brief:
What is meant by coherent sources?
What are the two methods for obtaining coherent sources in the laboratory?
What is the diffraction of light? How does it differ from interference? What are Fraunhofer and Fresnel diffractions?
Derive the conditions for bright and dark fringes produced due to diffraction by a single slit.
Describe Rayleigh's criterion for resolution. Explain it for a telescope and a microscope.
White light consists of wavelengths from 400 nm to 700 nm. What will be the wavelength range seen when white light is passed through a glass of refractive index 1.55?
The optical path of a ray of light of a given wavelength travelling a distance of 3 cm in flint glass having refractive index 1.6 is the same as that on travelling a distance x cm through a medium having a refractive index 1.25. Determine the value of x.
A double-slit arrangement produces interference fringes for sodium light (λ = 589 nm) that are 0.20° apart. What is the angular fringe separation if the entire arrangement is immersed in water (n = 1.33)?
Answer in brief:
In a double-slit arrangement, the slits are separated by a distance equal to 100 times the wavelength of the light passing through the slits.
- What is the angular separation in radians between the central maximum and an adjacent maximum?
- What is the distance between these maxima on a screen 50.0 cm from the slits?
Unpolarized light with intensity I0 is incident on two polaroids. The axis of the first polaroid makes on the angle of 50° with the vertical, and the axis of the second polaroid is horizontal. What is the intensity of the light after it has passed through the second polaroid?
In a biprism experiment, the fringes are observed in the focal plane of the eyepiece at a distance of 1.2 m from the slits. The distance between the central bright and the 20th bright band is 0.4 cm. When a convex lens is placed between the biprism and the eyepiece, 90 cm from the eyepiece, the distance between the two virtual magnified images is found to be 0.9 cm. Determine the wavelength of light used.
In Fraunhoffer diffraction by a narrow slit, a screen is placed at a distance of 2 m from the lens to obtain the diffraction pattern. If the slit width is 0.2 mm and the first minimum is 5 mm on either side of the central maximum, find the wavelength of light.
The intensity of the light coming from one of the slits in Young's experiment is twice the intensity of the light coming from the other slit. What will be the approximate ratio of the intensities of the bright and dark fringes in the resulting interference pattern?
A parallel beam of green light of wavelength 550 nm passes through a slit of width 0.4 mm. The intensity pattern of the transmitted light is seen on a screen that is 40 cm away. What is the distance between the two first-order minima?
What must be the ratio of the slit width to the wavelength of light for a single slit to have the first diffraction minimum at 45.0°?
Monochromatic electromagnetic radiation from a distant source passes through a slit. The diffraction pattern is observed on a screen 2.50 m from the slit. If the width of the central maximum is 6.00 mm, what is the slit width if the wavelength is
(a) 500 nm (visible light)
(b) 50 µm (infrared radiation)
(c) 0.500 nm (X rays)?
A star is emitting light at the wavelength of 5000 Å. Determine the limit of resolution of a telescope having an objective of a diameter of 200 inch.
Answer in brief:
The distance between two consecutive bright fringes in a biprism experiment using the light of wavelength 6000 Å is 0.32 mm by how much will the distance change if light of wavelength 4800 Å is used?
Solutions for 7: Wave Optics
Balbharati solutions for Physics [English] 12 Standard HSC Maharashtra State Board chapter 7 - Wave Optics
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Concepts covered in Physics [English] 12 Standard HSC Maharashtra State Board chapter 7 Wave Optics are Introduction of Wave Optics, Nature of Light, Light as a Wave, Huygens’ Theory, Reflection of Light at a Plane Surface, Refraction of Light at a Plane Boundary Between Two Media, Polarization, Interference, Diffraction of Light, Resolving Power.
Using Balbharati Physics [English] 12 Standard HSC Maharashtra State Board solutions Wave Optics exercise by students is an easy way to prepare for the exams, as they involve solutions arranged chapter-wise and also page-wise. The questions involved in Balbharati Solutions are essential questions that can be asked in the final exam. Maximum Maharashtra State Board Physics [English] 12 Standard HSC Maharashtra State Board students prefer Balbharati Textbook Solutions to score more in exams.
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