Wave propagation (huygens' construction) - class-XI
wave propagation (huygens' construction)
Questions
Choose the Correct answer from alternative given.
The phenomena which is not explained by Huygen's construction of wavefront.
- reflection
- diffraction
- refraction
- origin of spectra
Choose the Correct answer from alternative given.
Wavefront is the locus of all points, where the particles of the medium vibrate with the same
- phase
- amplitude
- frequency
- period
Choose the Correct answer from alternative given.
The idea of secondary wavelets for the propagation of a wave was first given by:
- Newton
- Huygens
- Maxwell
- Fresnel
The phenomena which is not explained by Huygen's construction of the wavefront
- reflection
- diffraction
- refraction
- origin of spectra
Wavefront is the locus of all points, where the particles of the medium vibrate with the same.
- phase
- amplitude
- frequency
- period
A transverse wave travelling in a denser medium is reflected from a rarer medium. Then,
- an incident crest is reflected as a crest
- an incident crest is reflected as a trough
- there is a phase change of $2\pi$ rad
- there is a phase change of $\pi/2$ rad
The radius of a wavefront as the waves propagate
- decreases
- increases
- becomes zero
- sometimes decreases and sometimes increases.
Huygens principle of secondary waves
- allow us to find the focal length of a thick convex lens.
- give us the magnifying power of the microscope.
- is a geometrical method to find, the position of a wave front.
- is used to determine the velocity of light.
The wave front due to a source situated at infinity is :
- spherical
- cylindrical
- planar
- none of these
Which of the following phenomena can be used to analyse a beam of light into its component wavelength?
- Reflection
- Refraction
- Polarisation
- Interference
Huygen's concept of wavelets is useful in
- explaining polarisation
- determining focal length of lenses
- determining chromatic aberration
- geometrical reconstruction of a wavefront
Ray optics is valid when characteristic dimensions are
- of the same order as the wavelength of light
- much smaller than the wavelength of light
- much larger than the wavelength of light
- of the order of 1 mm
Who first proposed that light was wave-like in character ?
- Huygens
- Newton
- Young
- Maxwell
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.
- Both A and R are true, and R is correct explanation of A
- Both A and R are true, and R is not correct explanation of A
- A is true but R is false
- A is false but R is true
1: Primary waves can travel in all directions in an ether
2: Secondary waves can travel only in backward in an ether
- 1 is true, 2 is false
- Both 1 and 2 are true
- 1 is false, 2 is true
- Both 1 and 2 are false
According to Huygens, the ether medium pervading entire universe is
- Less elastic and more dense
- Highly elastic and less dense
- Not elastic
- Much heavier
The wave theory of light, in its original form, was first postulated by.
- Isaac Newton
- Christian Huygens
- Thomas Young
- Augustin Jean Fresnel
Which experiment seemed to make it clear that light propogates as a wave?
- Milikan's oil drop experiment
- The Michelson-Morley experiment
- Young's double-slit experiment
- Fresnel's lens experiment
- Lenz's proof of Lenz's law
Wave front formed by the collimator of a spectrometer
- Plane
- Spherical
- Cylindrical
- Paraboloidal
Indentify the correct statement from the following
- Wave nature of light was proposed by Huygen.
- The direction of light ray and its wave front are opposite.
- Huygen's wave theory could not explain phenomenon of reflection.
- A monochromatic ray of light after passing through the prism should be made of one colour only.
Huygen's concept of secondary wave
- allow up to find the focal length of a thick lens
- is a geometrical method to find a wavefront
- is used to determine the velocity of light
- is used to explain polarization
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:
- ${ cos }^{ -1 }\frac { 1 }{ \sqrt { 14 } } $
- ${ cos }^{ -1 }\frac { 2 }{ \sqrt { 14 } } $
- ${ sin }^{ -1 }\frac { 1 }{ \sqrt { 14 } } $
- ${ sin }^{ -1 }\frac { 2 }{ \sqrt { 14 } } $
In which of the following cases do we obtain a plane wave front?
- Light emitted by a point source in an isotropic medium
- Light emerging from a convex lens when a point source is placed at its focus
- Light of the sun reaching the earth
- Light diverging from a slit.
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
- 90
- 81
- 67
- 72.85
For what distance ray optics a good approximation when the aperture is 4 mm wide and the wavelength is 500nm?
- $32m$
- $69 m$
- $16 m$
- $8 m$
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 $30^{o}$.
- $8000\ A^{o}$
- $12000\ A^{o}$
- $6000\ A^{o}$
- $16000\ A^{o}$
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
- $\pi/8$
- $\pi/4$
- $\pi/2$
- $\pi$
If light waves emitted by an ordinary source, for what period of time, the phase remains constant :-
- $10 sec$
- $1 sec$
- $10^{-3}$ sec
- $10^{-8}$ sec
According to Huygen's theory of light
- light is stream of photon
- light is wave
- light behaves as particle
- None of the above
In the case of parallel beam,
- intensity gradually increases
- intensity gradually decreases
- intensity remains constant
- None of these
Huygen's theory of light
- explain reflection and refraction of light
- explain scattering of light
- explain interference of light, diffraction of light
- None of the above
According to huygen's theory of secondary waves,following can be explained-
- Propagation of light in medium
- Reflection of light
- Refrection of light
- All of the above
Huygen's theory of secondary waves can be used of find-
- Velocity of light
- The wavelength of light
- Wave front geometrically
- Magnifying power of microscope
Huygen's theory of secondary waves can be used to find-
- Velocity of light
- The wavelength of light
- Wave front geometrically
- Magnifying power of microscope.
Coherent sources can be obtained:
- only by division of wave front
- only by division of amplitude
- both by division of amplitude and wave front
- none of the above
The wave theory in its original form was first postulated by
- Issac Newton
- Thomas Young
- Christian Huygens
- Augustine Jean Fresnel
Assertion $(A):$ Microwaves are better carries of signals than optical waves
Reason $(R):$ Microwaves move faster than optical waves
- Both $A$ and $R$ are true and $R$ is correct explanation of $A$
- Both $A$ and $R$ are true and $R$ is not the correct explanation of $A$
- $A$ is true but $R$ is false
- $A$ is false but $R$ is true
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
- $\lambda '> \lambda$
- $\lambda' = \lambda$
- $\lambda' < \lambda$
- none
The wave front due to a point source at a finite distance from the source is -
- Spherical
- Cylindrical
- Plane
- Circular
Particle nature and wave nature of electomagnetic waves can be shown by
- electron has small mass, deflected by the metal sheet
- X-ray is diffracted a, reflected by thick metal sheet
- light is refracted and diffracted
- light is polarised and shows photoelectric effect.
Which of the following statements indicates that light waves are transverse
- Light waves can travel in vacuum
- Light waves show interference
- Light waves can be polarized
- Light waves can be diffracted
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:
- bends downwards
- bends upwards
- becomes narrower
- goes horizontally without any deflection
Huygens' principle is used to
- obtain the new position of wavefront geometrically
- explain principle of superposition of waves
- explain interference
- explain polarization
When light suffers reflection at the interface between water and glass, the change of phase in the reflected wave is
- Zero
- $\pi$
- $\pi$/2
- 2$\pi$
On reflection from a plane surface, the following two characteristics get changed :
- Wavelength
- Frequency
- Velocity
- Amplitude
Huygen's originally thought that for the propagation of light waves wavefront is required.
- True
- False
The wave theory of Light was proposed by ...............
- Newton
- Huygens
- Frenel
- Yung
Who proposed wave nature of light ?
- Huygen
- Young
- Fresnel
- Maxwell
Mark the CORRECT statements(s)
- Direction of wave propagation is along the normal to wavefront.
- For a point source of light, the shape of wavefront can be considered to be plane at very large
distance from the source. - 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.
- 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.
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.
- If both A and B are true but the B is the correct explanation of A
- If both A and B are true but the B is not the correct explanation of A
- If A is true but B is false
- If both the A and B are false
- If B is true but A is false