A light wave has a frequency of 5.06 × 1014 cycles per second. (a) What is the wavelength? |x 10-7 m (b) According to the table below, what color would you observe?

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11th Edition
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Chapter1: Units, Trigonometry. And Vectors
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A light wave has a frequency of 5.06 x 1014 cycles per second.
ka) What is the wavelength?
10-7 m
(b) According to the table below, what color would you observe?
X
(Click to select) ✓
Red
Orange
Yellow
Green
Blue
Violet
Color
What is the energy of a gamma photon of frequency 2.32 × 1020 Hz?
X
-13
x 10 J
What is the speed of light traveling through glass? Assume that the index of refraction of glass for the light used is 1.50.
108 m/s
What is the energy of a photon of violet light with a frequency of 6.99 × 1014 Hz?
X
x 10-
wavelength (in 107 m)
6.25-7.90
6.00-6.24
5.77-5.99
4.92-5.76
4.55-4.91
3.90-4.54
19
J
What is the energy of a photon of violet light with a frequency of 7.45 × 1014 Hz?
-19
x 10 J
At a particular location and time, sunlight is measured on a 1.00 square meter solar collector with an intensity of 1153 W/m2. If the peak
intensity of this sunlight has a wavelength of 5.60 x 10-7 m, how many photons are arriving each second?
x 1021 Photon/s
Transcribed Image Text:A light wave has a frequency of 5.06 x 1014 cycles per second. ka) What is the wavelength? 10-7 m (b) According to the table below, what color would you observe? X (Click to select) ✓ Red Orange Yellow Green Blue Violet Color What is the energy of a gamma photon of frequency 2.32 × 1020 Hz? X -13 x 10 J What is the speed of light traveling through glass? Assume that the index of refraction of glass for the light used is 1.50. 108 m/s What is the energy of a photon of violet light with a frequency of 6.99 × 1014 Hz? X x 10- wavelength (in 107 m) 6.25-7.90 6.00-6.24 5.77-5.99 4.92-5.76 4.55-4.91 3.90-4.54 19 J What is the energy of a photon of violet light with a frequency of 7.45 × 1014 Hz? -19 x 10 J At a particular location and time, sunlight is measured on a 1.00 square meter solar collector with an intensity of 1153 W/m2. If the peak intensity of this sunlight has a wavelength of 5.60 x 10-7 m, how many photons are arriving each second? x 1021 Photon/s
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