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Engineering, 19.12.2019 21:31 jamarlittles9132

Vlf waves in the ocean. the electric field component of a uniform plane vlf (very low frequency) electromagnetic field propagating vertically down in the z-direction in the ocean ( o=4 s/m, ε, = 81, , =1) is approximately given by e (z, t)=e, e-ar cos(61 x10't - bz), where e0 is the electric field amplitude at z=0+ immediately below the air-ocean interface, at z = 0. note that the frequency of the wave is 3 khz. (a) find the attenuation constant a and phase constant ß. (b) find the wavelength 2, phase velocity vp, skin depth d, and intrinsic impedance ne, and compare them to their values in air. (c) write the instantaneous expression for the corresponding magnetic field, h(z,) a submarine located at a depth of 100 m has a receiver antenna capable of measuring electric fields with amplitudes of 1 uv/m or greater. what is the minimum required electric field amplitude immediately below the ocean surface (i. e., eo) in order to communicate with the submarine? what is the corresponding value for the amplitude of the magnetic field?

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