Light that is traveling in water (with an index of refraction of 1.33) is incident on a plate of glass (with index of refraction 1.53). At what angle of incidence does the reflected light end up fully polarized?
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Light that is traveling in water (with an index of refraction
of 1.33) is incident on a plate of glass (with index of refraction
1.53). At what angle of incidence does the reflected light end up
fully polarized?
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- The index of refraction for water is about 43. What happens as a beam of light travels from air into water? (a) Its speed increases to 43c, and its frequency decreases. (b) Its speed decreases to 34c, and its wavelength decreases by a factor of 34. (c) Its speed decreases to 34c, and its wavelength increases by a factor of 43. (d) Its speed and frequency remain the same. (e) Its speed decreases to 34c, and its frequency increases.A parallel beam of light in air makes an angle of 47.5° with the surface of a glass plate having a refractive index of 1.66. (a) What is the angle between the reflected part of the beam and the surface of the glass? (b) What is the angle between the refracted beam and the surface of the glass?A parallel beam of light in air makes an angle of 45.7◦ with the surface of a glass plate having a refractive index of 1.79. (a) What is the angle between the reflected part of the beam and the surface of the glass? (b) What is the angle of the refracted part of the beam and the surface of the glass?
- A beam of light in water (of refractive index of 1.33) enters a glass slab (of refractive index 1.50) at an angle of incidence of 60.0°. What is the angle of refraction in the glass?A beam of light in air makes an angle of 46 degrees with the surface normal of a glass plate having a refractive index of 1.54. (a) What is the speed of light in the glass plate? (b) What is the reflected angle of the light when the transmitted light hits the bottom surface of the glass plate? (c) If the transmitted light is confined in the glass plate upon reflection, what is the critical incidence angle?A ray of light is incident through glass, with refractive index 1.52, on an interface separating glass and water with refractive index 1.32. What is the angle of refraction if the angle of incidence of the ray in glass is 25 °?
- Light in vacuum is incident on the surface of a slab of transparent material. In the vacuum the beam makes an angle of 34.5° with the normal to the surface, while in the slab it makes an angle of 19.2° with the normal. What is the index of refraction of the transparent material?A parallel beam of light in air makes an angle of 47.5° with the surface of a glass plate having a refractive index of 1.66. (a) What is the angle between the reflected part of the beam and the surface of the glass? (b) What is the angle between the refracted beam and the surface of the glass? Select one: 47.5°, 66.0° 33.5°, 60.0° 47.5° , 60.0° 30.0° , 44.0° 25.0°, 22.0° 33.5°, 66.0° 25.0°, 44.0°Light in vacuum is incident on the surface of a glass slab. In the vacuum the beam makes an angle of 32.0° with the normal to the surface, while in the glass it makes an angle of 21.0° with the normal.What is the index of refraction of the glass?
- The angle of incidence of a light beam in air onto a reflecting surface is continuously variable. The reflected ray is found to be completely polarized when the angle of incidence is 63.0°. (a) What is the index of refraction of the reflecting material? (b) If some of the incident light (at an angle of 63.0°) passes into the material below the surface, what is the angle of refraction? answer in degrees °A ray of light crosses the boundary between some substance with n = 1.46 and air, going from the substance into air. If the angle of incidence is 26◦ what is the angle of refraction?A beam of light strikes a sheet of glass at an angle of 57.0° with the normal in air. You observe that red light makes an angle of 38.1° with the normal in the glass, while violet light makes a 36.7° angle. (a) What are the indexes of refraction of this glass for these colors of light? (b) What are the speeds of red and violet light in the glass?