Doppler Effect in Light Waves
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A sound source is moving along a straight track with speed , and is emitting, the sound of frequency (see figure). An observer is standing at a finite distance, at the point , from the track. The time variation of frequency heard by the observer is best represented by ( represents the instant when the distance between the source and observer is minimum).
A train, standing at the outer signal of a railway station blows a whistle of frequency 400 Hz in still air. (i) What is the frequency of the whistle for a platform observer when the train (a) approaches the platform with a speed of 10ms−1 , (b) recedes from the platform with a speed of 10ms−1 ? (ii) What is the speed of sound in each case? The speed of sound in still air can be taken as 340ms−1
(speed of light =3×108 ms−1). Answer the nearest integer.
A SONAR system fixed in a submarine operates at a frequency 40.0 kHz. An enemy submarine moves towards the SONAR with a speed of 360 km/hr. What is the frequency of sound reflected by the submarine? Take the speed of sound in water to be 1450 m/s.
A stationary source emits sound of frequency f0=492 Hz. The sound is reflected by a large car approaching the source with a speed of 2 ms−1. The reflected signal is received by the source and superposed with the original. The beat frequency of the resulting signal is
- 5:4
- 9:11
- 11:9
- 4:5
A very thin transparent film of soap solution of negligible thickness is seen under reflection of white light. Then the colour of the film appear to be :
A) blue
B) black
C) red
D) yellow
- cos−1(λ4d)
- tan−1(λ4d)
- sin−1(4λd)
- cos−1(4λd)
What is a wavelet in physics?
A train, standing in a station-yard, blows a whistle of frequency 400 Hz in still air. The wind starts blowing in the direction from the yard to the station with at a speed of 10ms−1. What are the frequency, wavelength, and speed of sound for an observer standing on the station’s platform? Is the situation exactly identical to the case when the air is still and the observer runs towards the yard at a speed of 10ms−1 ? The speed of sound in still air can be taken as 340ms−1
- bc
- bca
- bca
- cb
An isotropic point source having radiation power P is located on the axis of an ideal mirror plate. The distance between the source and the plate centre is n times the radius of the plate. In terms of photon theory find the force that light exerts on the plate.(c denotes speed of light) ?
- P2C[11+n2]
- P2C[11+2n2]
- PC[11+n2]
- PC[11+2n]
- The number of nodes is 5
- The length of the string is 0.25 m
- The maximum displacement of the mid-point of the string from its equilibrium position is 0.01 m
- The fundamental frequency is 50 Hz
[Assume, medium is stationary and the original frequency of the whistle is measured when the source and observer are at rest]
- 35 m/s
- 70 m/s
- 105 m/s
- 140 m/s
Is an LED a coherent light source ?
If the angles , and of a triangle are in an arithmetic progression and if , and denote the lengths of the sides opposite to , and respectively, then the value of the expression is
(Consider that the vertical diameter is the point where central bright fringe lies)
- 45∘
- 30∘
- 60∘
- Not possible in the first quadrant
Are all transverse waves polarized?
- 0.2 μm
- 0.3 μm
- 0.4 μm
- 0.5 μm
Two submarines are approaching each other in a calm sea. The first submarine travels at a speed of 36 km h−1 and the other at 54 km h−1' relative to the water. The first submarine sends a sound signal (sound waves in water are also called sonar) at a frequency of 2000 Hz. (a) At what frequency is this signal received by the second submarine ? (b) The signal is reflected from the second submarine. At what frequency is this signal received by the first submarine. Take the speed of the sound wave in water to be 1500 m s−1
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- 6130 K
- 7123 K
A point object is placed on the principal. axis of a convex lens (f= 15 cm) at a distance of 30 cm from it. A glass plate (μ=1.50) of thickness 1 cm is placed on the other side of the lens perpendicular to the axis. Locate the image of the point object.
Two factories are sounding their sirens at . A man goes from one factory to another at a speed of . The velocity of sound is . The number of beats heard by the person in one second will be.