阿摩線上測驗
登入
首頁
>
研究所、轉學考(插大)◆電磁學
>
110年 - 110 國立臺灣大學_碩士班招生考試_電信工程研究所甲組:電磁學及電磁波#113085
> 試題詳解
32. Which one cannot allow TEM wave propagation?
(A) Rectangular metal waveguide.
(B)Coaxial cable.
(C) Parallel-plate waveguide.
(D)Stripline.
答案:
登入後查看
統計:
尚無統計資料
詳解 (共 1 筆)
MoAI - 您的AI助手
B1 · 2025/11/16
#7107467
1. 題目解析 題目要求我們找出哪一個選...
(共 805 字,隱藏中)
前往觀看
0
0
其他試題
28. The electric field of a plane wave is given by(zt) = x3 cos(ωt-kz) + y4 cos(ωt-kz) (V/m). Determine the polarization state of the corresponding electromagnetic wave. (A)Lincar Polarization (B) Right-Hand Circular Polarization (C) Left-Hand Circular Polarization (D)Elliptical Polarization
#3060451
29. The general expression of the voltage on a lossless transmission line in the sinusoidal steady state is Which one of the following statements is wrong?(A)The current can be expressed as,where Z0 is the characteristic impedance of the transmission line. (B) If B is zero, there is no standing wave on the transmission line. (C) The first term and the second term represent the waves going in the +z and -z directions, respectively. (D) ω /vp is the propagation constant.
#3060452
30. A 50-Ω transmission line is terminated by a load. Which one of the following statements is wrong? (A)Ifthe load impedance is 0Ω and the electrical length of the transmission line is 90 degree, the input impedance is ∞. (B) If the load impedance is 100 Ω and the electrical length of the transmission line is 90 degree, the input impedance is 20Ω. (C) Ifthe load impedance is 200Ω and the electrical length of the transmission line is 180 degree, the input impedance is 200Ω. (D) If the load impedance is 30 Ω and the electrical length of the transmission line is 360 degree, the input impedance is 30Ω.
#3060453
31. For the system impedance of Zo, what is the component which can match the impedance at point A to point B along the constant VSWR circle as shown in Fig. 1? (A)A series capacitor. (B) A series resistor. (C) A series transmission line with characteristic impedance of Zo. (D)A shunt short-circuited transmission line with characteristic impedance of Zo.
#3060454
33. If the load is a pure inductor L, which statement is WRONG? (A) A refected wave is resulted since the boundary condition at load is violated. (B) The inductor is initially open, hence the voltage at the load will be Vo at t =T+. (C) The reflccted wave will be of positive voltage for t > T. (D)The voltage at the load will be zero as t tends to infinity.
#3060456
34. If the load is a scries resistor R = Zo and inductor L, which statement is WRONG? (A) The current at the load should be continuous versus t, due to the presence of L. (B) The inductor is initially open, hence the voltage at the load will be Vo at t =T+. (C) The reflected wave will be of positive voltage for t> T. (D)The voltage at the load will be zero as t tends to infinity.
#3060457
35. If the load is a pure capacitor C, which statement is WRONG? (A) The voltage at the load should be continuous versus t, due to the presence of C. (B) The capacitor is initially short, hence the voltage at the load will be O at t=T+. (C) The reflected wave will be of positive voltage for t much larger than T. (D)The voltage at the load will be zero as t tends to infinity.
#3060458
36. If the load is a shunt connection of capacitor C and resistor R =Zo, which statement is WRONG? (A)The voltage at the load should be continuous versus t, due to the presence of C. (B) The capacitor is initially short, hence the voltage at the load will be zero at t=T. (C) The reflected wave will be of positive voltage for t much larger than T. (D) The voltage at the load will be Vo/2 as t tends to infinity.
#3060459
37. Design a transmission line of characteristic impedance Zo and length , as shown in the Fig. 3, to match a resistive load RI = 300 Ω to a lossless transmission line of characteristic impedance Zo = 75 Ω (A)Z1= 150Ω,=λ/8 (B) Z1= 187.5Ω,=λ/8 (C) Z1= 150Ω,=λ/4 (D) Z1= 187.5Ω,=λ/4 (E)Z1= 150Ω, =λ/2
#3060460
38. A 50-Ω transmission line is connected to a load of impedance ZL = 35 + j80Ω. Find the position d and length of a short-circuited stub required for impedance matching, as shown in the Fig. 4. (A)d= 0.016λ,= 0.076 (B) (C)d= 0.266λ,= 0.0761; (D) (E) It is impossible to match the load using the single-stub matching circuit.
#3060461