If the radiant energy from the sun comes in as a plane EM wave of intensity 1 340 W/m?, calculate the peak values of E and B. 300 V/m, 10-4 T b. 1 000 V/m, 3.35 x 10-6 T 225 V/m, 1.60x 10-3 T d. a. c. 111 V/m, 3.00 × 10-5 T 711 V/m, 2.37 × 106 T e. ANS: B PTS: 2 DIF: Average
If the radiant energy from the sun comes in as a plane EM wave of intensity 1 340 W/m?, calculate the peak values of E and B. 300 V/m, 10-4 T b. 1 000 V/m, 3.35 x 10-6 T 225 V/m, 1.60x 10-3 T d. a. c. 111 V/m, 3.00 × 10-5 T 711 V/m, 2.37 × 106 T e. ANS: B PTS: 2 DIF: Average
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I already know the answer to this practice problem, and it is shown is the image. I do not know how to get to the answer though, so seeing the steps and equations would be much appreciated.

Transcribed Image Text:If the radiant energy from the sun comes in as a plane EM wave of intensity 1 340 W/m?, calculate the peak values of E and B.
300 V/m, 10-4 T
b. 1 000 V/m, 3.35 x 10-6 T
225 V/m, 1.60x 10-3 T
d.
a.
c.
111 V/m, 3.00 × 10-5 T
711 V/m, 2.37 × 106 T
e.
ANS: B
PTS: 2
DIF: Average
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