Wavefront diagrams can be used to indicate the frequency of waves.
Which wave has the lowest frequency?

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Wave Phenomena
Wavefront diagrams can be used to indicate the frequency of waves.
Which wave has the lowest frequency?
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The two waveforms in the diagram are moving in opposite directions.
Which waveform would be observed as a result of superposition?
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Two pulses are travelling towards each other.
Which waveform would be observed when the pulses undergo superposition?
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In a reflection ray diagram, the angle of incidence is the angle between
the incident ray and the boundary surface.
the incident ray and the normal.
the incident ray and the reflected ray.
the reflected ray and the boundary surface.
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A ray of light refracts as it passes from one medium into another.
Which property of the light wave remains the same?
Frequency
Wavelength
Wave speed
Amplitude
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Ray diagrams can be used to show the reflection, refraction and transmission of light at the boundary between media.
In the diagram, what feature does X represent?
Reflected ray
Refracted ray
Transmitted ray
Incident ray
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Light from a monochromatic laser beam is incident on the surface of a body of water.
What changes to the speed, wavelength, and frequency of the light wave would be observed as it passes from the air to the water?
| speed | wavelength | frequency |
A | no change | increases | decreases |
B | decreases | decreases | no change |
C | increases | decreases | no change |
D | decreases | no change | increases |
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Which is the correct ray diagram showing light passing from air into water?
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The diagram shows a wave approaching an aperture.
Which diagram correctly shows the resulting diffraction pattern for the wave?
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Which row correctly describes the conditions for constructive and destructive interference in a double-slit diffraction pattern?
| Constructive | Destructive |
A. | Crest + crest | Trough + trough |
B. | Crest + trough | Trough + trough |
C. | Trough + trough | Crest + crest |
D. | Crest + crest | Crest + trough |
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Two waves of wavelength are emitted from sources S1 and S2, respectively. Both waves arrive at point P.
What is the path difference between the waves?
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Diffraction can be observed in
all waves
sound waves only
transverse waves only
light waves only
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For fringes to be observed in a double-slit interference experiment, the light emitted from each slit must be
monochromatic.
in phase.
of equal intensity.
coherent.
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A wave is moving along a rope under tension as shown.
Which graph correctly shows the variation with time of the displacement
of particle K in the rope?
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Two waves from individual point sources meet at a point.
For interference to be observed at the point, the waves must
have equal amplitudes.
have equal wavelengths.
have a constant phase difference.
be electromagnetic.
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The diagram shows the shape of the wavefront as a result of the diffraction of plane waves by two apertures.
At which point will the amplitude of the waves be a minimum?
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A flat plate made of glass has a refractive index of n = 1.52. What is the speed of light within this material?
1.36 × 108 m s–1
1.67 × 108 m s–1
1.97 × 108 m s–1
2.66 × 108 m s–1
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A light ray is incident on an air–diamond boundary. The refractive index of diamond is greater than 1.
What changes to the speed, frequency, and wavelength of the light wave would be observed as it passes from the air to the diamond?
| speed | frequency | wavelength |
A | increases | decreases | stays constant |
B | decreases | stays constant | decreases |
C | stays constant | decreases | increases |
D | increases | stays constant | increases |
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The effect of a double slit on monochromatic light is observed using the setup shown in the diagram.
Interference fringes are seen on the screen.
Which of the following changes would increase the distance between the adjacent fringes?
Decrease the width of all the slits.
Move the screen closer to the slits.
Use light of a higher frequency.
Decrease the distance between the two slits.
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In a Young’s double-slit experiment, the distance between the slits is and the distance between the slits and the screen on which fringes are formed is
. When monochromatic light of wavelength
is incident on the slits, the distance between adjacent fringes on the screen is
.
Which of the following arrangements would produce a fringe spacing of ?
| Wavelength of the light | Distance between the slits and the screen | Distance between slits |
A. | |||
B. | |||
C. | |||
D. |
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Which of the following processes changes the frequency of a wave?
Reflection
Refraction
Diffraction
None of the above
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Young’s double-slit experiment is set up as shown, including a monochromatic source, a single slit, a double slit and a screen.
What is the purpose of the single slit in this experiment?
To make sure there is equal intensity in the double-slits.
To make sure the light is coherent upon the double-slits.
To decrease intensity for the double-slits.
To reduce the wavelength of the light.
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Two point sources, S1 and S2, emit identical sound waves of intensity .
The waves leaving S1 and S2 are in phase and arrive at point X. The wavelength of the sound is 3.0 m. Point X is 18.0 m from S1 and 10.5 m from S2.
What intensity of sound would be heard by a person standing at point X?
Zero
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Which diagram shows the path of visible light as it travels through a glass prism?
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The angle of incidence should always be measured between
the normal and the reflected ray.
the normal and the incident ray.
the incident ray and the reflected ray.
the incident ray and the surface of the second medium.
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Waves emitted from sources V and W are initially in phase and have equal wavelengths. Point A is not equidistant between V and W. The waves interfere destructively at point A, where the path difference is 0.30 m.
What is the maximum possible value of the wavelength of the waves?
0.12 m
0.20 m
0.30 m
0.60 m
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The diagram shows an arrangement for a two-slit interference experiment.
Coherent light of frequency is incident on two narrow parallel slits S1 and S2. An interference pattern is observed on a screen a distance away. The central bright fringe is observed at point O, and the next bright fringe is observed at point P. The speed of light is
.
The distance S2P – S1P is equal to
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The interference of light waves is observed using a double-slit arrangement as shown.
Monochromatic light is incident on the slits, which are considered to be infinitely narrow point sources. An interference pattern is observed on a screen, and a central maximum is observed at point O.
Which graph shows the intensity distribution of light on the screen?
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A beam of monochromatic light is incident on a double slit. The slit separation is , and the distance between the slits and the screen is
. The angle between the central maximum and first-order maxima is
, as shown.
What is the wavelength of the light?
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Monochromatic light of wavelength is incident on a double slit. The resulting interference pattern is observed on a screen a distance
from the slits. The distance between consecutive fringes in the pattern is 21 mm when the slit separation is
.
If and
are tripled, and
is doubled, what is the new distance between consecutive fringes?
7 mm
21 mm
42 mm
63 mm
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A ripple tank is used to demonstrate the movement of progressive waves. In the tank, a wave is set in motion from left to right.
The displacement of points X and Y on the wave at time = 0 are indicated.
Which graph represents the variation with time of the displacement
of points X and Y?
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Two loudspeakers, X1 and X2, emit a continuous sound of the same frequency.
Loudspeaker X1 is positioned to the left of loudspeaker X2, and both loudspeakers are positioned parallel to the detection line AB. When a microphone is moved from left to right along the line AB, a minimum is first detected at P, followed by a maximum at Q, with another minimum at R, and a maximum at S. PQRS are all equidistant, and X1S = X2S.
Which of the following expressions correctly represents the wavelength of the sound waves?
X2P - X1P
X2Q - X1Q
X2R - X1R
X2S - X1S
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A ray of light is incident on a material made from three layers, each having a different optical density, so that in each layer the light travels at a different speed.
For layer 1: refractive index = n1 and the speed of light = c1
For layer 2: refractive index = n2 and the speed of light = c2
For layer 3: refractive index = n3 and the speed of light = c3
Angle of incidence = i
Angle of refraction = r
This is illustrated in the diagram below:
Which is the correct expression for c3, the speed of light in the third layer?
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Diamonds are highly valued because of their sparkle. This is caused by total internal reflection, which reflects most of the light that falls onto a cut diamond out of the face we see. Fake gems, called ‘paste’, are often used in jewellery because they are cheaper. However, paste gems sparkle much less than real diamonds.
The diagrams show a possible path of light through a real diamond and another through a fake.
Which row in the table contains only statements which must be true?
| critical angle of diamond | | vd |
A | Very small | > 1 | < vf |
B | Very small | < 1 | > vf |
C | Very large | > 1 | < vf |
D | Very large | < 1 | > vf |
Where:
n = refractive index;
nd is the refractive index of the diamond
nf is the refractive index of the fake
v = speed of light
vd is the speed of light in the diamond
vf is the speed of light in the fake
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A double slit interference experiment is conducted using monochromatic light of wavelength . The centre of the observed pattern is a bright fringe.
What is the path difference between the two waves which interfere to give the second dark fringe from the centre?
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A student is investigating the interference of waves. They set up coherent waves produced at points S and T and travel outwards in all directions.
The line XY is halfway between S and T and perpendicular to the joining line S and T. The distance XY is much greater than the distance ST.
Which line or lines would an interference pattern be seen along?
WZ only
XY only
Both XY and WZ
Neither XY or WZ
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When a ray of light passes from material A to material B, the direction of the ray bends away from the normal. The refractive indices of materials A and B are and
, respectively.
Which of the following statements is true?
The value of cannot be known without more information
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A physicist carried out Young's double slit experiment using a monochromatic beam. The diagram shows the equipment set-up and the pattern produced with a ruler next to it.
What is the wavelength of the monochromatic beam?
0.03 nm
3 nm
6 µm
9 µm
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