3. The electric field of an EM wave traveling in a vacuum is described by the following wave function: E = (5.00 V/m) cos[ka – (6 × 10° s-1)t +0.40]ĵ Find the following: (a) amplitude (b) frequency (c) wavelength (d) the direction of wave travel (e) the associated magnetic field wave function (f) the wave intensity

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3. The electric field of an EM wave traveling in a vacuum is described by the following wave function:
E = (5.00 V/m) cos[ka – (6 × 10° s-1)t +0.40]ĵ
Find the following:
(a) amplitude
(b) frequency
(c) wavelength
(d) the direction of wave travel
(e) the associated magnetic field wave function
(f) the wave intensity
Transcribed Image Text:3. The electric field of an EM wave traveling in a vacuum is described by the following wave function: E = (5.00 V/m) cos[ka – (6 × 10° s-1)t +0.40]ĵ Find the following: (a) amplitude (b) frequency (c) wavelength (d) the direction of wave travel (e) the associated magnetic field wave function (f) the wave intensity
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