The load Z= 50 + j50 (ohm) is connected to a source Vg (t) = 15...
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The load Z= 50 + j50 (ohm) is connected to a source Vg (t) = 15 cos( 2 nft) %3D (volts) by a main lossless transmission line of total length 0.4 meters, and characteristic impedance Zo = 50 (ohm). Another lossless transmission line, called stub, of length L = 3/8 = 0.375 meters is connected in parallel to the main line at a point d = 1/4 = 0.25 meters away from the load. The end of the stub is an open circuit and it also has the characteristic impedance of Zo = 50 (ohm). The speed of propagation in both the main line and in the stub is 3x10 (meters/second). The internal impedance of the generator is Zg = 100 (ohms). Find the wavelength A, the input impedance Zinp, and the average %3D power P consumed by the load Z if the frequency is (a) f = 300 MHz, (b) f = 600 MHz. Open circuit Zo Zg Zo Zo 1. Vg(t) Zinp d = 25 cm - 15 cm e -L%=37.5 cm The load Z= 50 + j50 (ohm) is connected to a source Vg (t) = 15 cos( 2 nft) %3D (volts) by a main lossless transmission line of total length 0.4 meters, and characteristic impedance Zo = 50 (ohm). Another lossless transmission line, called stub, of length L = 3/8 = 0.375 meters is connected in parallel to the main line at a point d = 1/4 = 0.25 meters away from the load. The end of the stub is an open circuit and it also has the characteristic impedance of Zo = 50 (ohm). The speed of propagation in both the main line and in the stub is 3x10 (meters/second). The internal impedance of the generator is Zg = 100 (ohms). Find the wavelength A, the input impedance Zinp, and the average %3D power P consumed by the load Z if the frequency is (a) f = 300 MHz, (b) f = 600 MHz. Open circuit Zo Zg Zo Zo 1. Vg(t) Zinp d = 25 cm - 15 cm e -L%=37.5 cm
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