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Part B: 1) Series RL Circuit: With the impedance circuit switch in the RL position, measure and write down the voltages across the components and
Part B: 1) Series RL Circuit: With the impedance circuit switch in the "RL" position, measure and write down the voltages across the components and the currents through each component (VR, VL, Vtot, I). 2) Calculate the impedance of the circuit using Z = Vtot I 3) Use your measured values of the individual voltages and currents across each element (Resistor, Inductor) to calculate the resistance, R, and the inductive reactance, XL, via the equations VR=IR, VL=IXL. The frequency is f= 60 Hz. 4) From the individual voltage and current measurements, calculate the impedance of the circuit using Z = VR2 + X_" . Compare this value to the value you calculated in #2 above. 5) Calculate R and L. 6) Calculate the phase angle of the series RL circuit. 7) Draw a phase diagram for the series RL circuit. Be certain to label your axes and your units.Part C: 1) Series RC Circuit: With the impedance circuit switch in the "RC" position, measure and write down the voltages across the components and the currents through each component (VR, Vc, V tot, D). 2) Calculate the impedance of the circuit using Z =- Vtot I 3) Use your measured values of the individual voltages and currents across each element (Resistor, Capacitor) to calculate the resistance, R, and the capacitive reactance, Xc, via the equations VR=IR, Vc=IXc. The frequency is f = 60 Hz. 4) From the individual voltage and current measurements, calculate the impedance of the circuit using Z = R2 + Xc . Compare this value to the value you calculated in #2 above. 5) Calculate R and C. 6) Calculate the phase angle of the series RC circuit. 7) Draw a phase diagram for the series RC circuit. Be certain to label your axes and your units
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