a. The electric field in the EM wave is given by the following equation: E = 450sin(0.40z – 6.0 × 10°t)î, where E is N/C, z in meters and t in seconds. Determine the curl of the electric field (V X E).
a. The electric field in the EM wave is given by the following equation: E = 450sin(0.40z – 6.0 × 10°t)î, where E is N/C, z in meters and t in seconds. Determine the curl of the electric field (V X E).
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
Transcribed Image Text:Answer the following two bonus questions.
a. The electric field in the EM wave is given by the following equation:
E = 450sin(0.40z – 6.0 x 10°t)î, where E is N/C, z in meters and t in seconds. Determine the
curl of the electric field (V X E).
b. Use the divergence theorem to convert the Gauss' law from the integral form to the
differential form.
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