If medium 2 is a perfect conductor with n2 = 0, then the transmission coefficient is? a) zero b) -1 c) 0.5 d) Infinity e) None If two media have equal impedances (n1 = n2), then the reflection coefficient is? a) zero b) 1 c) 0.5 d) Infinity e) None The ray extended from point 3 to point 4 represents a ...... a) Reflected wave b) Diffracted wave Transmitter c) Refracted wave d) Incident wave e) None antenna P Air Water Receiver antenna P, Rx

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Solve This Electromagnetics 2 Conceptal problems
If medium 2 is a perfect conductor with n2 = 0, then the transmission coefficient is?
a) zero
b) -1
c) 0.5
d) Infinity
e) None
If two media have equal impedances (ni = n2), then the reflection coefficient is?
a) zero
b) 1
c) 0.5
d) Infinity
e) None
The ray extended from point 3 to point 4 represents a
a) Reflected wave
b) Diffracted wave
c) Refracted wave
Transmitter
antenna
d) Incident wave
e) None
Air
Water
Receiver
antenna
Rx
E'
E'
HO+
HO k,
ET
k, +® H
E,, Ej, and E,
Medium 1 (ɛ1, µ1)
Medium 2 (ɛ2, µ2)
Can be related at z = 0 as follow?
a) Equal each other
b) Incident added to transmitted equal reflected
c) Reflected added to transmitted equal incident
d) Incident added to reflected equal double the transmitted
e) None
Transcribed Image Text:If medium 2 is a perfect conductor with n2 = 0, then the transmission coefficient is? a) zero b) -1 c) 0.5 d) Infinity e) None If two media have equal impedances (ni = n2), then the reflection coefficient is? a) zero b) 1 c) 0.5 d) Infinity e) None The ray extended from point 3 to point 4 represents a a) Reflected wave b) Diffracted wave c) Refracted wave Transmitter antenna d) Incident wave e) None Air Water Receiver antenna Rx E' E' HO+ HO k, ET k, +® H E,, Ej, and E, Medium 1 (ɛ1, µ1) Medium 2 (ɛ2, µ2) Can be related at z = 0 as follow? a) Equal each other b) Incident added to transmitted equal reflected c) Reflected added to transmitted equal incident d) Incident added to reflected equal double the transmitted e) None
For a lossy transmission line, the characteristic impedance does not depend on
a) The operating frequency of the line
b) The length of the line
c) The load terminating the line
d) The conductivity of the conductors
e) The conductivity of the dielectric separating the conductors
Transcribed Image Text:For a lossy transmission line, the characteristic impedance does not depend on a) The operating frequency of the line b) The length of the line c) The load terminating the line d) The conductivity of the conductors e) The conductivity of the dielectric separating the conductors
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