Question

In: Physics

A lossless 50-Ω transmission line is terminated in a load with Z L = (35 −...

A lossless 50-Ω transmission line is terminated in a load with
Z L = (35 − j47.5) Ω using a short circuited stub. Use the Smith chart to determine position and
length line for the stub?

show step by step by hand and draw by hand

I want details so I can understand

Solutions

Expert Solution

Please give me like because of my future contribution it's needed..Thank u :)))))


Related Solutions

A lossless 50-Ω transmission line is terminated in a load with Z L = (35 −...
A lossless 50-Ω transmission line is terminated in a load with Z L = (35 − j47.5) Ω using a short circuited stub. Use the Smith chart to determine position and length line for the stub? show step by step I want details so I can understand
A lossless 60 Ω line is terminated by a (60 + j60) Ω load. (a) Find...
A lossless 60 Ω line is terminated by a (60 + j60) Ω load. (a) Find Γ and VSWR. (b) If Zin = 120 - j60 Ω, how far (in terms of wavelengths) is the load from the generator? (c) What fraction of the voltage is reflected? (d) What fraction of the current is reflected? (e) What fraction of the power is reflected?
3. A lossless 60 Ω line is terminated by a (60 + j60) Ω load. (a)...
3. A lossless 60 Ω line is terminated by a (60 + j60) Ω load. (a) Find Γ and VSWR. (b) If Zin = 120 - j60 Ω, how far (in terms of wavelengths) is the load from the generator? (c) What fraction of the voltage is reflected? (d) What fraction of the current is reflected? Solve by using smith charts
A lossless transmission line of length l=0.4? is terminated with a complex load impedance Z_L=60+j50 ?...
A lossless transmission line of length l=0.4? is terminated with a complex load impedance Z_L=60+j50 ? and characteristic impedance (Z_0=50 ?). Use Smith Chart to find: The VSWR on the line; The reflection coefficient at the load and its phase angle; The load admittance of the line Y_L in S; The input impedance of the line in ?; The distance to the first voltage minimum from the load in ?; and The distance to the first voltage maximum from the...
Derive aformula for the input impedance of a terminated lossless transmission line.
Derive aformula for the input impedance of a terminated lossless transmission line.
Assuming that the length of a lossless transmission line with the normalized load impedance of zL...
Assuming that the length of a lossless transmission line with the normalized load impedance of zL = ZL/Z0 = 1 + j1 is l = 2.25λz , there are a total of (A) 2 voltage maxima and 2 voltage minima (B) 2 voltage maxima and 3 voltage minima (C) 3 voltage maxima and 2 voltage minima (D) 4 voltage maxima and 4 voltage minima (E) 4 voltage maxima and 5 voltage minima (F) 5 voltage maxima and 4 voltage minima...
(Use Smith Chart) A 50 Ω line is terminated by a 75 Ω resistor. The input...
(Use Smith Chart) A 50 Ω line is terminated by a 75 Ω resistor. The input terminals are connected to the output terminals of a 30 Ω line. Both lines are 0.12 λ long. a. Find Zin and Γin at the input of the 30 Ω line b. SWR values on both lines Use Smith Chart
A 100 ohms load is connected to a 50 ohms transmission line. Determine the value of...
A 100 ohms load is connected to a 50 ohms transmission line. Determine the value of the reactance to put in series at the input to the line and the length in wavelengths of the shortest transmission line to match with a 50 ohms source.
A 50Ω lossless line is to be matched to an antenna with Zload = (100+j50)Ω using...
A 50Ω lossless line is to be matched to an antenna with Zload = (100+j50)Ω using a shorted stub. Use the Smith chart to determine the stub length and distance between the antenna and stub
12. At a frequency of 80 MHz, a lossless transmission line has a characteristic impedance of...
12. At a frequency of 80 MHz, a lossless transmission line has a characteristic impedance of 300Ω and a wavelength of 2.5m. (a) Find L; (b) Find C. (c) If the line is terminated with the parallel combination of 200Ω and 5 pF, determine Γ and SWR.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT