A lossless 60-2 line is terminated by a 60 + j60-2 load. If Zin = 120 - j60 N, how far (in terms of wavelengths) is the load from the generator? Solve this without using the Smith chart.
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A: Here we need to find reflection coefficient first and then we can find ZL.
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- The observed standing-wave ratio on a 100-Ω lossless line is 8. If the first maximum voltageoccurs at 0.3λ from the load, calculate the load impedance and the voltage reflection coefficientat the load. (use smith chart) How do you use a smith chart to solve this?For a lossless trabsmisison line, the characteristic impedance is 80 ohm. If the capacitance per unit length is 1.5 mh/m then what will be the inductance per unit length.A lossless transmission line has 100 ? characteristic impedance. The line is terminated in a load impedance of 70-j100 ?. The maximum voltage measured on the line is 200V. Find;1. The minimum current and minimum voltage on the line2. Explain how location of voltage maximum can be determined by using load reflection coefficient from the forward and backward wave.3. Using load reflection coefficient in ii., calculate the distance from the load that produce the maximum voltage and current.
- A 75 Ω lossless line is terminated in error with a 93 Ω resistor. A generator sends 100 mW down the line.(a) What is the SWR on the line? (b) What is the reflection coefficient?Stuck on this practice study question. How do solve this transmission problem? A lossless 50-ohm transmission line is terminated in a short circuit. Use the Smith chart to determine: a. The input impedance at a distance 2.3λ from the load. b. The distance from the load at which the input admittance is Yin= -j0.04 SA lossless transmission with characteristic impedance of ?0 = 100Ω and length = 52cmThe line was terminated with a load of ?? = 30 + ?50Ω. According to what is given, a) The reflection coefficient in the load and the voltage standing wave ratio on the line (GDDO)Find out.b) Find the impedance and admittance at the line input. (for ? = 750???)c) For ? = 750???, the impedance and admittance values 2cm away from the load.(It will be assumed that = ?0.)
- A lossless transmission line having 90 Ω characteristic impedance and length λ/4 is short-circuited at one end and connected to an ideal voltage source of 1V at the other end. Find the current drawn from the voltage sources.The observed standing wave ratio on a 100 Ω lossless line is 8. If the first voltage maximum occurs at 0.3λ from the load, calculate ZL and voltage reflection coefficient at the load.The capacitance per unit length and the inductance per unit length for a lossless transmission line are 0.1 F/m and 20 H/m respectively. What will be the characteristic impedance of the line?
- Topic: Electromagnetic Waves. Please help with this question. The observed standing wave ratio on a 100 Ω lossless line is 8. If the first voltage maximum occurs at 0.3λ from the load, calculate ZL and voltage reflection coefficient at the load.A lossless transmission line has a Zo of 50 ohms and a line velocity of 2.4 x 10^8 m/s. If the operating frequency is 1 MHz. Determine the capacitance in pf.An extra high voltage transmission line of length 300 km can be approximated by a lossless line having propgation constant is 0.00127 rad/km. The percentage ratio of line length to wave length will nearly by ?