Engineering Electromagnetics
Engineering Electromagnetics
9th Edition
ISBN: 9780078028151
Author: Hayt, William H. (william Hart), Jr, BUCK, John A.
Publisher: Mcgraw-hill Education,
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Chapter 13, Problem 13.23P
To determine

(a)

To prove:

The average power density in the TE10 mode in a rectangular waveguide given by:

   S=β102ωμE02sin2(κ10x)azW/m2.

To determine

(b)

The integrated value of the result obtained in part (a) and prove that the average powers in watts

transmitted down the guide is given as:

   Pavg=β10ab4ωμE02=ab4ηE02sin2θ10W

Where η=με and θ10 is the wave angle associated with the TE10 mode

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Students have asked these similar questions
12.6 If in a rectangular waveguide for which a = 2b, the cutoff frequency for TE92 mode is 12 GHz, the cutoff frequency for TM, mode is (a) 3 GHz (b) 3V5 GHz (c) 12 GHz (d) 6V5 GHz (e) None of the above
A rectangular waveguide measures 1.016 x 2.286 cm internally with a signal propagated in it. Complete the table below showing all mathematical expressions used in arriving at the answer.   Mode Cut-off Wavelength in cm Cut-off frequency in Ghz 1 TE10     2 TE20     3 TE01     4 TE11     5 TM11     Explain the reasons for the cut-off wavelength and its importance to waveguide propagation.
Derive the expressions for the Ex, Ey, Bx, By in Waveguides.   Pls. show complete answer
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