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QUESTION:
A plane polarized electromagnetic wave propagates
with Erms = 30 V/m. What is the power transmitted to
a circular disk of radius r = 2m, if all of the light is
absorbed by the disk and S is perpendicular to the
disk?
A . 10 J/s
B . 30 J/s (KAPLAN'S ANSWER)
C . 60 J/s
D . 90 J/s (MY ANSWER)
Relevant Passage info: Intensity of the wave equals the power transmitted per area.
The intensity, I, can therefore be written as I =Erms^2/(cμ0), where Erms is the root-mean-square electric field.
Kaplan Answer Key: B; P = r^2 × I
My question is: For area, why don't you multiply it pi r^2, since it's a circular disk?
The answer key says that it's r^2 * I but I thought it would be pi r^2 * I.
Thanks for your help.
A plane polarized electromagnetic wave propagates
with Erms = 30 V/m. What is the power transmitted to
a circular disk of radius r = 2m, if all of the light is
absorbed by the disk and S is perpendicular to the
disk?
A . 10 J/s
B . 30 J/s (KAPLAN'S ANSWER)
C . 60 J/s
D . 90 J/s (MY ANSWER)
Relevant Passage info: Intensity of the wave equals the power transmitted per area.
The intensity, I, can therefore be written as I =Erms^2/(cμ0), where Erms is the root-mean-square electric field.
Kaplan Answer Key: B; P = r^2 × I
My question is: For area, why don't you multiply it pi r^2, since it's a circular disk?
The answer key says that it's r^2 * I but I thought it would be pi r^2 * I.
Thanks for your help.