Engineering Electromagnetics
Engineering Electromagnetics
9th Edition
ISBN: 9781260029963
Author: Hayt
Publisher: MCG
Question
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Chapter 13, Problem 13.5P
To determine

(a)

The dielectric constant of an insulating medium, so that Z0=300Ω.

To determine

(b)

The dielectric constant of an insulating medium, so that C=20pF/m.

To determine

(c)

The dielectric constant of an insulating medium, so that vp=2.6×108m/s.

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Design a dielectric-filled rectangular waveguide for transmission of electromagnetic power at 2.45 GHz. Find the maximum power the waveguide can transmit. Use an electric field safety factor of 10. Neglect conduction losses. The material filling the waveguide is nonmagnetic with zero conductivity, and has r = 2.1; its breakdown electric field is 6x107 V/m.
The relative magnetic permeability (μr) of a lossless medium is given as 16 and the relative dielectric constant (r) as 25. The electric field component of a planar electromagnetic wave with a frequency of 1 MHz oscillates only along the x-axis and the wave travels in the + z direction. The electric field component of the wave takes a value of 500 V / m at the point z = 0.7 m at t = 70 ns. According to this; a) Find the phase constant (β), wavelength (λ), propagation velocity (up), and the impedance of the medium (η). b) Find the expressions ?⃗ (0.7, t) and ?⃗⃗ (0.7, t).
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