The magnetic field along the propagation direction inside a rectangular waveguide with the cross section shown in the figure is H₁₂ = 3 cos (2.094 x 10²x) cos (2.618x10²y) cos(6.283x10¹0t-Bz) 1.2 cm 3 cm The phase velocity V, of the wave inside the waveguide satisfies (A) X. > G (B) Y = C (C) 0 < x < G (D) X 0

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The magnetic field along the propagation direction inside a rectangular
waveguide with the cross section shown in the figure is
H₂ = 3 cos (2.094x10²x) cos (2.618x10²y) cos (6.283×10¹0 t - Bz)
1.2 cm
3 cm
The phase velocity V, of the wave inside the waveguide satisfies
(A) Vp > C
(B) Vp = C
(C) 0 < Vp <C
(D) Vp
= 0
Transcribed Image Text:The magnetic field along the propagation direction inside a rectangular waveguide with the cross section shown in the figure is H₂ = 3 cos (2.094x10²x) cos (2.618x10²y) cos (6.283×10¹0 t - Bz) 1.2 cm 3 cm The phase velocity V, of the wave inside the waveguide satisfies (A) Vp > C (B) Vp = C (C) 0 < Vp <C (D) Vp = 0
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