A beam of red light, which has a wavelength of 6.60 x 107m in air, travels through an unknown material, in which the the speed of light drops to 2.28 x 10°m/s. Complete the chart by determining the index of refraction, velocity, frequency and wavelength in each medium.

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Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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positivephysics.org
its
my
P Positive Physi..
3x1
positivephysics
PREMIUM
dashboard
A beam of red light, which has a wavelength of 6.60 x 10 m in air, travels through
an unknown material, in which the the speed of light drops to 2.28 x 10°m/s.
Complete the chart by determining the index of refraction, velocity, frequency
wavelength in each medium.
and
V
[m/s]
[Hz]
[m]
air
300000000
4.55e-7
6,6e-7
unknown material
228000000
check answers
Transcribed Image Text:positivephysics.org its my P Positive Physi.. 3x1 positivephysics PREMIUM dashboard A beam of red light, which has a wavelength of 6.60 x 10 m in air, travels through an unknown material, in which the the speed of light drops to 2.28 x 10°m/s. Complete the chart by determining the index of refraction, velocity, frequency wavelength in each medium. and V [m/s] [Hz] [m] air 300000000 4.55e-7 6,6e-7 unknown material 228000000 check answers
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A student shines a laser through a semicircular transparent material with an index
of refraction shown. She slowly increases the angle of incidence until no light
refracts into the air as shown. This is called total internal reflection!
At what angle of incidence does this occur?
n=1.19
check answers
Unit 22: light, reflection and refraction
Desmos Srientific Onlime Chlculeror
Transcribed Image Text:positivephysics.org my yGoorg oou p Positive Physi... G 310 囚こlsgs13 Porig Shcc positivephysics PREMIUM dashboard A student shines a laser through a semicircular transparent material with an index of refraction shown. She slowly increases the angle of incidence until no light refracts into the air as shown. This is called total internal reflection! At what angle of incidence does this occur? n=1.19 check answers Unit 22: light, reflection and refraction Desmos Srientific Onlime Chlculeror
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