1) Two identical plane mirrors A and B are aligned parallel to each other, as shown in the figure below. The length of cach mirror is L = 10v3 m. A light ray is incident at an angle of 30° at a point just inside one end of mirror A. The number of times the ray undergoes reflections (including the first time) before it emerges out is: Mirror-B 0,3 m/ Mirror-A 30 (a) 45 (b)50 (c) 90 (d) 100 2) A source of light S is placed between a mirror of height h and a screen as shown in the figure.

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Chapter1: Units, Trigonometry. And Vectors
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12:49 O M f •
4G
all 86%
PHYS220_Practice Shee..
PHYS220 _ Practice Sheet-3
1) Two identical plane mirrors A and B are aligned parallel to each other, as shown in the figure
below. The length of each mirror is L = 10v3 m. A light ray is incident at an angle of 30° at a
point just inside one end of mirTor A. The number of times the ray undergoes reflections
(including the first time) before it emerges out is:
Mirror-B
0.3 m/
Mirror-A
30°
(a) 45
(b)50
(c) 90
(d) 100
2) A source of light S is placed between a mirror of height h and a screen as shown in the figure.
The source is at a distance h from the mirror and a distance x from the screen. Ifx = h, then
the ray reflected from the upper edge of the mirror would hit the screen at a height from
its bottom.
Screen
Mirror
(a) 2h
(b) 3h
(c) 4h
(d)5h
3) Light of wavelength A = 629 nm is incident from vacuum onto glass of index of refraction n =
1.49 with an angle of incidence 0 = 30°. Taking the speed of light in vacuum equal to 3 x
10° m/s, then the wavelength, Ag, and the frequency, fa. of light in the glass are respectively:
(a) 408.4 nm; 4.8 x 104 Hz
(b)422.1 nm; 4.8 x 104 Hz
(c) 422.1 nm; 7.1 x 1014 Hz
(d) 433.8 nm; 4.8 x 104 Hz
4) In the figure shown below the ratio "sin 8,/sin 0," is equal to,
* 0
(a) n/n
(b)nz/n,
(c) n/n,
(d)n,/n2
5) The speed of light in the different media of the figure shown below is such that:
II
Transcribed Image Text:12:49 O M f • 4G all 86% PHYS220_Practice Shee.. PHYS220 _ Practice Sheet-3 1) Two identical plane mirrors A and B are aligned parallel to each other, as shown in the figure below. The length of each mirror is L = 10v3 m. A light ray is incident at an angle of 30° at a point just inside one end of mirTor A. The number of times the ray undergoes reflections (including the first time) before it emerges out is: Mirror-B 0.3 m/ Mirror-A 30° (a) 45 (b)50 (c) 90 (d) 100 2) A source of light S is placed between a mirror of height h and a screen as shown in the figure. The source is at a distance h from the mirror and a distance x from the screen. Ifx = h, then the ray reflected from the upper edge of the mirror would hit the screen at a height from its bottom. Screen Mirror (a) 2h (b) 3h (c) 4h (d)5h 3) Light of wavelength A = 629 nm is incident from vacuum onto glass of index of refraction n = 1.49 with an angle of incidence 0 = 30°. Taking the speed of light in vacuum equal to 3 x 10° m/s, then the wavelength, Ag, and the frequency, fa. of light in the glass are respectively: (a) 408.4 nm; 4.8 x 104 Hz (b)422.1 nm; 4.8 x 104 Hz (c) 422.1 nm; 7.1 x 1014 Hz (d) 433.8 nm; 4.8 x 104 Hz 4) In the figure shown below the ratio "sin 8,/sin 0," is equal to, * 0 (a) n/n (b)nz/n, (c) n/n, (d)n,/n2 5) The speed of light in the different media of the figure shown below is such that: II
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