L A uniform plane wave propagating through a medium with 1, -20 and o-3mhos/m. has E...
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L A uniform plane wave propagating through a medium with 1, μ-20 and o-3mhos/m. has E = 0.5e-sin (10ºt-Bz)a, V/m. Determine a) Calculate the loss tangent b) What type of medium may be used here? c) Calculate the 2 parameters a and B P. d) Calculate the Amplitude of magnetic field Ho? e) Present the final form of the magnetic field. Show its direction 1= √√ II. If the attenuation becomes null (a-0), the medium presents new characteristics and p Ho and B-0.8 a) Calculate i. the wave velocity ii. the intrinsic impedance b) conclude about the type of the medium L A uniform plane wave propagating through a medium with 1, μ-20 and o-3mhos/m. has E = 0.5e-sin (10ºt-Bz)a, V/m. Determine a) Calculate the loss tangent b) What type of medium may be used here? c) Calculate the 2 parameters a and B P. d) Calculate the Amplitude of magnetic field Ho? e) Present the final form of the magnetic field. Show its direction 1= √√ II. If the attenuation becomes null (a-0), the medium presents new characteristics and p Ho and B-0.8 a) Calculate i. the wave velocity ii. the intrinsic impedance b) conclude about the type of the medium L A uniform plane wave propagating through a medium with 1, μ-20 and o-3mhos/m. has E = 0.5e-sin (10ºt-Bz)a, V/m. Determine a) Calculate the loss tangent b) What type of medium may be used here? c) Calculate the 2 parameters a and B P. d) Calculate the Amplitude of magnetic field Ho? e) Present the final form of the magnetic field. Show its direction 1= √√ II. If the attenuation becomes null (a-0), the medium presents new characteristics and p Ho and B-0.8 a) Calculate i. the wave velocity ii. the intrinsic impedance b) conclude about the type of the medium L A uniform plane wave propagating through a medium with 1, μ-20 and o-3mhos/m. has E = 0.5e-sin (10ºt-Bz)a, V/m. Determine a) Calculate the loss tangent b) What type of medium may be used here? c) Calculate the 2 parameters a and B P. d) Calculate the Amplitude of magnetic field Ho? e) Present the final form of the magnetic field. Show its direction 1= √√ II. If the attenuation becomes null (a-0), the medium presents new characteristics and p Ho and B-0.8 a) Calculate i. the wave velocity ii. the intrinsic impedance b) conclude about the type of the medium L A uniform plane wave propagating through a medium with 1, μ-20 and o-3mhos/m. has E = 0.5e-sin (10ºt-Bz)a, V/m. Determine a) Calculate the loss tangent b) What type of medium may be used here? c) Calculate the 2 parameters a and B P. d) Calculate the Amplitude of magnetic field Ho? e) Present the final form of the magnetic field. Show its direction 1= √√ II. If the attenuation becomes null (a-0), the medium presents new characteristics and p Ho and B-0.8 a) Calculate i. the wave velocity ii. the intrinsic impedance b) conclude about the type of the medium L A uniform plane wave propagating through a medium with 1, μ-20 and o-3mhos/m. has E = 0.5e-sin (10ºt-Bz)a, V/m. Determine a) Calculate the loss tangent b) What type of medium may be used here? c) Calculate the 2 parameters a and B P. d) Calculate the Amplitude of magnetic field Ho? e) Present the final form of the magnetic field. Show its direction 1= √√ II. If the attenuation becomes null (a-0), the medium presents new characteristics and p Ho and B-0.8 a) Calculate i. the wave velocity ii. the intrinsic impedance b) conclude about the type of the medium
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Solution to Part I a Calculate the loss tangent The loss tangent is defined as the ratio of the imaginary part of the complex permittivity to the real ... View the full answer
Related Book For
Income Tax Fundamentals 2013
ISBN: 9781285586618
31st Edition
Authors: Gerald E. Whittenburg, Martha Altus Buller, Steven L Gill
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