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Wewaii [24]
3 years ago
4

Light is refracted as it travels from a point A in medium 1 to a point B in medium 2. If the index of refraction is 1.33 in medi

um 1 and 1.51 in medium 2, how much time does it take for light to go from A to B, assuming it travels 331 cm in medium 1 and 151 cm in medium 2?
Physics
1 answer:
tester [92]3 years ago
6 0

Answer: 0.000001475s=1.475\mu s

Explanation:

The index of refraction n is a number that describes how fast light propagates through a medium or material.  

Being its equation as follows:  

n=\frac{c}{v} (1)

Where c=3(10)^{8}m/s is the speed of light in vacuum and v its speed in the other medium.

So, from (1) we can find the velocity at which the light travels and then the time it requires to travel : v=\frac{c}{n} (2)

For medium 1:

n_{1}=1.33

v_{1}=\frac{c}{n_{1}} (3)

v_{1}=\frac{3(10)^{8}m/s}{1.33}=225563909.8m/s (4)

For medium 2:

n_{2}=1.51

v_{2}=\frac{c}{n_{2}} (5)

v_{2}=\frac{3(10)^{8}m/s}{1.51}=198675496.7m/s (6)

On the other hand, the velocity v is the distance d traveled in a time t:

v=\frac{d}{t} (7)

We can isolate t from (7) and find the value of the required time:

t=\frac{d}{v} (8)

In this case the total time will be:

t=t_{1}+t_{2}=\frac{d_{1}}{v_{1}}+\frac{d_{2}}{v_{2}} (9)

Where:

d_{1}=331cm=3.31m is the distance the light travels in medium 1

d_{2}=151cm=1.51m is the distance the light travels in medium 2

v_{1}=225563909.8m/s is the velocity of light in medium 1

v_{2}=198675496.7m/s is the velocity of light in medium 2

t=t_{1}+t_{2}=\frac{3.31m}{225563909.8m/s}+\frac{1.51m}{198675496.7m/s} (10)

Finally:

t=0.000001475s=1.475(10)^{-6}s=1.475\mu s (10)

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