Wave propagation (huygens' construction) - class-XI

wave propagation (huygens' construction)

50 Questions Published

Questions

Question 1 Multiple Choice (Single Answer)

Choose the Correct answer from alternative given.
The phenomena which is not explained by Huygen's construction of wavefront.

  1. reflection
  2. diffraction
  3. refraction
  4. origin of spectra
Question 2 Multiple Choice (Single Answer)

Choose the Correct answer from alternative given.
Wavefront is the locus of all points, where the particles of the medium vibrate with the same

  1. phase
  2. amplitude
  3. frequency
  4. period
Question 3 Multiple Choice (Single Answer)

Choose the Correct answer from alternative given.
The idea of secondary wavelets for the propagation of a wave was first given by:

  1. Newton
  2. Huygens
  3. Maxwell
  4. Fresnel
Question 4 Multiple Choice (Single Answer)

The phenomena which is not explained by Huygen's construction of the wavefront

  1. reflection
  2. diffraction
  3. refraction
  4. origin of spectra
Question 5 Multiple Choice (Single Answer)

Wavefront is the locus of all points, where the particles of the medium vibrate with the same.

  1. phase
  2. amplitude
  3. frequency
  4. period
Question 6 Multiple Choice (Single Answer)

A transverse wave travelling in a denser medium is reflected from a rarer medium. Then, 

  1. an incident crest is reflected as a crest
  2. an incident crest is reflected as a trough
  3. there is a phase change of $2\pi$ rad
  4. there is a phase change of $\pi/2$ rad
Question 7 Multiple Choice (Single Answer)

The radius of a wavefront as the waves propagate

  1. decreases
  2. increases
  3. becomes zero
  4. sometimes decreases and sometimes increases.
Question 8 Multiple Choice (Single Answer)

Huygens principle of secondary waves

  1. allow us to find the focal length of a thick convex lens.
  2. give us the magnifying power of the microscope.
  3. is a geometrical method to find, the position of a wave front.
  4. is used to determine the velocity of light.
Question 9 Multiple Choice (Single Answer)

The wave front due to a source situated at infinity is :

  1. spherical
  2. cylindrical
  3. planar
  4. none of these
Question 10 Multiple Choice (Single Answer)

Which of the following phenomena can be used to analyse a beam of light into its component wavelength?

  1. Reflection
  2. Refraction
  3. Polarisation
  4. Interference
Question 11 Multiple Choice (Single Answer)

Huygen's concept of wavelets is useful in

  1. explaining polarisation
  2. determining focal length of lenses
  3. determining chromatic aberration
  4. geometrical reconstruction of a wavefront
Question 12 Multiple Choice (Single Answer)

Ray optics is valid when characteristic dimensions are

  1. of the same order as the wavelength of light
  2. much smaller than the wavelength of light
  3. much larger than the wavelength of light
  4. of the order of 1 mm
Question 13 Multiple Choice (Single Answer)

Who first proposed that light was wave-like in character ?

  1. Huygens
  2. Newton
  3. Young
  4. Maxwell
Question 14 Multiple Choice (Single Answer)

A : The phase difference between any two points on a wave front is zero
R : From the source light, reaches every point on the wave front in the same time.

  1. Both A and R are true, and R is correct explanation of A
  2. Both A and R are true, and R is not correct explanation of A
  3. A is true but R is false
  4. A is false but R is true
Question 15 Multiple Choice (Single Answer)

1: Primary waves can travel in all directions in an ether
2: Secondary waves can travel only in backward in an ether

  1. 1 is true, 2 is false
  2. Both 1 and 2 are true
  3. 1 is false, 2 is true
  4. Both 1 and 2 are false
Question 16 Multiple Choice (Single Answer)

According to Huygens, the ether medium pervading entire universe is

  1. Less elastic and more dense
  2. Highly elastic and less dense
  3. Not elastic
  4. Much heavier
Question 17 Multiple Choice (Single Answer)

The wave theory of light, in its original form, was first postulated by.

  1. Isaac Newton
  2. Christian Huygens
  3. Thomas Young
  4. Augustin Jean Fresnel
Question 18 Multiple Choice (Single Answer)

Which experiment seemed to make it clear that light propogates as a wave?

  1. Milikan's oil drop experiment
  2. The Michelson-Morley experiment
  3. Young's double-slit experiment
  4. Fresnel's lens experiment
  5. Lenz's proof of Lenz's law
Question 19 Multiple Choice (Single Answer)

Wave front formed by the collimator of a spectrometer

  1. Plane
  2. Spherical
  3. Cylindrical
  4. Paraboloidal
Question 20 Multiple Choice (Multiple Answers)

Indentify the correct statement from the following

  1. Wave nature of light was proposed by Huygen.
  2. The direction of light ray and its wave front are opposite.
  3. Huygen's wave theory could not explain phenomenon of reflection.
  4. A monochromatic ray of light after passing through the prism should be made of one colour only.
Question 21 Multiple Choice (Single Answer)

Huygen's concept of secondary wave

  1. allow up to find the focal length of a thick lens
  2. is a geometrical method to find a wavefront
  3. is used to determine the velocity of light
  4. is used to explain polarization
Question 22 Multiple Choice (Single Answer)

The wavefront of a lightbeam is given by the equation $x+2y+3z=c$,(where c is arbitary constant) the angle made by the direction of light with the y-axis is:

  1. ${ cos }^{ -1 }\frac { 1 }{ \sqrt { 14 } } $
  2. ${ cos }^{ -1 }\frac { 2 }{ \sqrt { 14 } } $
  3. ${ sin }^{ -1 }\frac { 1 }{ \sqrt { 14 } } $
  4. ${ sin }^{ -1 }\frac { 2 }{ \sqrt { 14 } } $
Question 23 Multiple Choice (Single Answer)

In which of the following cases do we obtain a plane wave front?

  1. Light emitted by a point source in an isotropic medium
  2. Light emerging from a convex lens when a point source is placed at its focus
  3. Light of the sun reaching the earth
  4. Light diverging from a slit.
Question 24 Multiple Choice (Single Answer)

The two coherent sources of equal intensity produce maximum intensity of $100$ units at a point. If the intensity of one of the sources is reduced by $50%$ by reducing its width then the intensity of light at the same point will be

  1. 90
  2. 81
  3. 67
  4. 72.85
Question 25 Multiple Choice (Single Answer)

 For what distance ray optics a good approximation when the aperture is 4 mm wide and the wavelength is 500nm?

  1. $32m$
  2. $69 m$
  3. $16 m$
  4. $8 m$
Question 26 Multiple Choice (Single Answer)

A monochromatic light is incident on a single slit of width $24\times 10^{-5}\ cm$. Calculate wavelength of light if angular position of $1^{st}$ secondary maxima is $30^{o}$.

  1. $8000\ A^{o}$
  2. $12000\ A^{o}$
  3. $6000\ A^{o}$
  4. $16000\ A^{o}$
Question 27 Multiple Choice (Single Answer)

At the first minimum adjacent to the central maximum of a single slit diffraction plate the phase difference between the huygens wavelet from the edge of the slit and the wavelet from the midpoint of the slate

  1. $\pi/8$
  2. $\pi/4$
  3. $\pi/2$
  4. $\pi$
Question 28 Multiple Choice (Single Answer)

If light waves emitted by an ordinary source, for what period of time, the phase remains constant :-

  1. $10 sec$
  2. $1 sec$
  3. $10^{-3}$ sec
  4. $10^{-8}$ sec
Question 29 Multiple Choice (Single Answer)

According to Huygen's theory of light

  1. light is stream of photon
  2. light is wave
  3. light behaves as particle
  4. None of the above
Question 30 Multiple Choice (Single Answer)

In the case of parallel beam,

  1. intensity gradually increases
  2. intensity gradually decreases
  3. intensity remains constant
  4. None of these
Question 31 Multiple Choice (Single Answer)

Huygen's theory of light

  1. explain reflection and refraction of light
  2. explain scattering of light
  3. explain interference of light, diffraction of light
  4. None of the above
Question 32 Multiple Choice (Multiple Answers)

According to huygen's theory of secondary waves,following can be explained-

  1. Propagation of light in medium
  2. Reflection of light
  3. Refrection of light
  4. All of the above
Question 33 Multiple Choice (Single Answer)

Huygen's theory of secondary waves can be used of find-

  1. Velocity of light
  2. The wavelength of light
  3. Wave front geometrically
  4. Magnifying power of microscope
Question 34 Multiple Choice (Single Answer)

Huygen's theory of secondary waves can be used to find-

  1. Velocity of light
  2. The wavelength of light
  3. Wave front geometrically
  4. Magnifying power of microscope.
Question 35 Multiple Choice (Single Answer)

Coherent sources can be obtained:

  1. only by division of wave front
  2. only by division of amplitude
  3. both by division of amplitude and wave front
  4. none of the above
Question 36 Multiple Choice (Single Answer)

The wave theory in its original form was first postulated by 

  1. Issac Newton
  2. Thomas Young
  3. Christian Huygens
  4. Augustine Jean Fresnel
Question 37 Multiple Choice (Single Answer)

Assertion  $(A):$  Microwaves are better carries of signals than optical waves
Reason  $(R):$  Microwaves move faster than optical waves

  1. Both $A$ and $R$ are true and $R$ is correct explanation of $A$
  2. Both $A$ and $R$ are true and $R$ is not the correct explanation of $A$
  3. $A$ is true but $R$ is false
  4. $A$ is false but $R$ is true
Question 38 Multiple Choice (Single Answer)

A wave pulse traveling on a two piece string, gets partially reflected and partially transmitted at the junction. The reflected wave is inverted in shape as compared to incident one. If the incident wave has wavelength  $\lambda$  and transmitted wave has  $\lambda ',$  then

  1. $\lambda '> \lambda$
  2. $\lambda' = \lambda$
  3. $\lambda' < \lambda$
  4. none
Question 39 Multiple Choice (Single Answer)

The wave front due to a point source at a finite distance from the source is -

  1. Spherical
  2. Cylindrical
  3. Plane
  4. Circular
Question 40 Multiple Choice (Single Answer)

Particle nature and wave nature of electomagnetic waves can be shown by

  1. electron has small mass, deflected by the metal sheet
  2. X-ray is diffracted a, reflected by thick metal sheet
  3. light is refracted and diffracted
  4. light is polarised and shows photoelectric effect.
Question 41 Multiple Choice (Single Answer)

Which of the following statements indicates that light waves are transverse 

  1. Light waves can travel in vacuum
  2. Light waves show interference
  3. Light waves can be polarized
  4. Light waves can be diffracted
Question 42 Multiple Choice (Single Answer)

On a hot summer night,the refractive index of air is smallest near the ground and increases with height from the ground. When a light beam is directed horizontally , the Huygen's principle leads us to conclude that as it travel,the light beam:

  1. bends downwards
  2. bends upwards
  3. becomes narrower
  4. goes horizontally without any deflection
Question 43 Multiple Choice (Single Answer)

Huygens' principle is used to

  1. obtain the new position of wavefront geometrically
  2. explain principle of superposition of waves
  3. explain interference
  4. explain polarization
Question 44 Multiple Choice (Single Answer)

When light suffers reflection at the interface between water and glass, the change of phase in the reflected wave is

  1. Zero
  2. $\pi$
  3. $\pi$/2
  4. 2$\pi$
Question 45 Multiple Choice (Multiple Answers)

On reflection from a plane surface, the following two characteristics get changed :

  1. Wavelength
  2. Frequency
  3. Velocity
  4. Amplitude
Question 46 Multiple Choice (Single Answer)

Huygen's originally thought that for the propagation of light waves wavefront is required.

  1. True
  2. False
Question 47 Multiple Choice (Single Answer)

The wave theory of Light was proposed by ...............

  1. Newton
  2. Huygens
  3. Frenel
  4. Yung
Question 48 Multiple Choice (Single Answer)

Who proposed wave nature of light ?

  1. Huygen
  2. Young
  3. Fresnel
  4. Maxwell
Question 49 Multiple Choice (Multiple Answers)

Mark the CORRECT statements(s)

  1. Direction of wave propagation is along the normal to wavefront.
  2. For a point source of light, the shape of wavefront can be considered to be plane at very large

    distance from the source.
  3. A point source of light is placed at the focus of a thin spherical lens, then the shape of the wavefront for emerged light may be plane.
  4. The shape of the wavefront for the light incident on a thin spherical lens (kept in vacuum) is plane, the shape of the wavefront corresponding to emergent light would be always spherical.
Question 50 Multiple Choice (Single Answer)

A: The corpuscular theory fails in explaining the velocities of light in air and water.
B: According to corpuscular theory, the light should travel faster in a 'denser medium than in a rarer medium.

  1. If both A and B are true but the B is the correct explanation of A
  2. If both A and B are true but the B is not the correct explanation of A
  3. If A is true but B is false
  4. If both the A and B are false
  5. If B is true but A is false