The movement of light waves that come into contact with each other is called A. Interference B. Polarisation OC. Refraction D. Dispersion E. Rectilinear propagation
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A: Given : Refractive Index of glass, \mun = 1.5 Speed of light, c = 3 × 108 ms-1
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A: The net impact of two or more wave trains running on intersecting or coinciding routes is called…
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A: The critical angle is given by sin c = 1n where, n is the refractive index of the medium.
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A: Given, The wavelength of light in vacuum = 650 nm
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Q: _1. Light cannot travel in a vacuum.
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A: index of refraction = velocity of light in vaccum/ velocity of light in the medium When light goes…
Q: a. emits green light. b. absorbs green light. C. transmits green light. d. reflects green light.
A: d) Apple is green because it REFLECTS GREEN LIGHTS ( and absorb all other lights)
Q: The image below shows what? Y Reflection Doppler Effect Refraction Diffraction
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Q: 23. Sometimes, sound waves strike a drinking glass and cause it to shatter. This phenomenon…
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A: When light wave pass through an opening , the waves wil not diffract much if the opening is :
Q: give an example of wave characteristic of light that is easily observed outside the laboratory
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A: Given: (Note : A multiple kind of question is given answer for first image is given below. Please…
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A: Law of reflection: It states that the reflection from a smooth surface, the angle of the reflected…
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A: The expression for speed of light in glass is given by vglass=cnglass=300000 kms×103 m1 km1.5=2×108…
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A: Remember that speed of light depends on the medium in which light travels. Where V = c/n c = speed…
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Q: Light becomes partially polarized as it reflects off nonmetallic surfaces such as glass, water, or a…
A: Parallel
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A: Answer 24.414
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A: Hello. Since your question has multiple parts, we will solve the first question (1) for you. If you…
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A: A very fine fabric
Q: 10. The index of refraction of beer is about 1.35. What is the speed of light in beer?
A: Given: The refractive index of the beer is 1.35.
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- Can a sound wave in air be polarized? Explain.The speed of light in air is approximately v=3.00108 m/s and the speed of light in glass is v=2.00108 m/s . A red laser with a wavelength of =633.00 nm shines light incident of the glass, and some of the red light is transmitted to the glass. The frequency of the light is the same for the air and the glass. (a) What is the frequency of the light? (b) What is the wavelength of the light in the glass?The following represents an electromagnetic wave traveling in the direction of the positive y-axis: Ex=0;E0cos(kxt);Ez=0Bx=0;By=0;Bz=B0cos(kxt) The wave is passing through a wide tube of circular cross- section of radius R whose axis is along they-axis. Find the expression for the displacement current through the tube.
- On the Moon’s surface, lunar astronauts placed a comet reflector, off which a laser beam Is periodically reflected. The distance to the Moon is calculated from the round-trip time. What percent correction Is needed to account for the delay in time due to the slowing of light in Earth’s atmosphere? Assume the distance to the Moon is precisely 3.84108 m and Earth’s atmosphere (which varies in density with altitude) is equivalent to a layer 30.0 km thick with a constant index of refraction n= l.000293.If a polarizing filter reduces the intensity of polarized light to 50.0% of its original value, by how much are the electric and magnetic fields reduced?A Marconi antenna, used by most AM radio stations, consists of the top half of a Hertz antenna (also known as a half-wave antenna because its length is /2). The lower end of this Marconi (quarter-wave) antenna is connected to Earth ground, and the ground itself serves as the missing lower hall. What are the heights of the Marconi antennas for radio stations broadcasting at (a) 560 kHz and (b) 1 600 kHz?
- It is found that when light traveling in water falls on a plastic block, Brewster’s angle is 50.0°. What is the refractive index of the plastic?(a) Light reflected at 62.5° from a gemstone in a ring is completely polarized. Can the gem be a diamond? (b) At what angle would the light be completely polarized if the gem was in water?To save money on making military aircraft invisible to radar, an inventor decides to coat them with a nonreflective material having an index of refraction of 1.20, which is between that of air and the surface of the plane. This, he reasons, should be much cheaper than designing Stealth bombers. (a) What thickness should the coating be to inhibit the reflection of 4.00-cm wavelength radar? (b) What is unreasonable about this result? (c) Which assumptions are unreasonable or inconsistent?
- Unpolarized light passes through three polarizing filters. The first filter has its transmission axis parallel to the z direction, the second has its transmission axis at an angle of 30.0 from the z direction, and the third has its transmission axis at an angle of 60.0 from the z direction. If the light that emerges from the third filter has an intensity of 250.0 W/m2, what is the original intensity of the light?Figure P24.69 shows a radio-wave transmitter and a receiver, both h = 50.0 m above the ground and d = 6.00 102 m apart. The receiver can receive signals directly from the transmitter and indirectly from signals that bounce off the ground. If the ground is level between the transmitter and receiver and a /2 phase shift occurs upon reflection, determine the longest wavelengths that interior (a) constructively and (b) destructively. Figure P24.69The Tunguska event. On June 30, 1908, a meteor burned up and exploded in the atmosphere above the Tunguska River valley in Siberia. It knocked down trees over thousands of square kilometers and started a forest fire, but produced no crater and apparently caused no human casualties. A witness sitting on his doorstep outside the zone of falling trees recalled events in the following sequence. He saw a moving light in the sky, brighter than the Sun and descending at a low angle to the horizon. He felt his face become warm. He felt the ground shake. An invisible agent picked him up and immediately dropped him about a meter from where he had been seated. He heard a very loud protracted rumbling. Suggest an explanation for these observations and for the order in which they happened.