In the Figure, if ag=4,6 Np/m ve B1=3,11 rad/m for the medium 1, az=4,9 Np/m , B2=2,7 rad/m for the medium 2 and f=1GHZ, T=-0,649 , find the distance at which the magnitude of reflected electric field is equal to (lE| = 8 V/m. 1 Er2, Hr2, 02 Er1, fHr1, 01 Et 2 ît îi X x = 0 V f=1GHZ |E'(x = 0)| = = 16- m O a. 0m О ь.0,15 m O c. hiçbiri / no one O d. 0,14 m O e. 0,06 m

Introductory Circuit Analysis (13th Edition)
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In the Figure, if a=4,6 Np/m ve B1=3,11 rad/m for the medium 1, az=4,9 Np/m, B2=2,7 rad/m for the medium 2 and f=1GHZ, T=-0,649 , find the distance at which the magnitude of reflected electric field is equal to (E| = 8 V/m.
Er2, Hr2, 02
Et
2
Er1, fHr1, 01
→ ît
îi
X
x = 0
V
f=1GHZ
|E'(x = 0)| = 16-
т
O a. 0m
O b.0,15 m
O c. hiçbiri / no one
O d. 0.14 m
O e. 0,06 m
Transcribed Image Text:In the Figure, if a=4,6 Np/m ve B1=3,11 rad/m for the medium 1, az=4,9 Np/m, B2=2,7 rad/m for the medium 2 and f=1GHZ, T=-0,649 , find the distance at which the magnitude of reflected electric field is equal to (E| = 8 V/m. Er2, Hr2, 02 Et 2 Er1, fHr1, 01 → ît îi X x = 0 V f=1GHZ |E'(x = 0)| = 16- т O a. 0m O b.0,15 m O c. hiçbiri / no one O d. 0.14 m O e. 0,06 m
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