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- Determine the quality factor for Maxwell's inductance-capacitance bridge given bellow, when the bridge is supplied by a frequency of 50 Hz.A transmission line has a reactance of 1 Pu is operating at Vs = Vr = 1 Pu. The generator is connected at source end which is delivering 0.5 Pu of active power and the transmission line is compensated with a series capacitance of 0.5 Pu. Find the load angle with series capacitance compensation ?Let the Leq that can be used to represent the inductive network at the terminals
- Given the following delta-connected resistances: Rab = 10 Ω, Rbc = 9 Ω, and Rca = 4 Ω, calculate the value of Rc in Ω which is the equivalent wye-connected resistance connected to terminal cFind the equivalent admittance, Yzb in the ckt and express the answer in rectangular and polar form.In one measurement of the body's bioelectric impedance, values of Z = 4.09 x 102 and = -6.08° are obtained for the total impedance and the phase angle, respectively. These values assume that the body's resistance R is in series with its capacitance C and that there is no inductance L. Determine the body's (a) resistance and (b) capacitive reactance.
- A SERIES RC CIRCUIT TAKES A CURRENT WHOSE EQUATION Is 2 sin (754t+40) AMPERE. WHEN CONNECTED TO A SOURCE OF EMF HAVING THE EQUATION e = 340sin 754 VOLTS. CALCULATE, (A) THE VALUE OF Z, R, AND XC, (B) CAPACITANCE, AND (C) AVERAGE POWER.A 100 Ω resistor in parallel with a 5 pF capacitor terminates a 100 Ω transmission line. Calculate the SWR on the line at 2 GHz.Calculate the velocity factor of a coaxial cable used as a transmission line with the characteristic impedance of 50 ohms; capacitance is 40 pF/m and an inductance equal to 50 microH/m.
- Capacitor Banks that can be used to simulate the Load is provided in the Distribution Line Simulator. Select one: True FalseFor the configuration shown in the figure below, determine Zi if Vs = 40 mV, Sense = 0.5 kΩ, and Ii = 20 µAFor balanced condition, find Q in Maxwell bridge if R1=250Ω, C1=4µF, R2=50Ω, R3=20Ω, f=60Hz .