In Figure 15-63, calculate the output frequency
Assume that the capacitor in Figure 15-75 is degraded to a point where its leakage resistance is 10 kΩ. Determine the output voltage under the degraded condition.
The circuit represented by the schematic in Figure 15-76 has no output voltage, which is the voltage across the capacitor. You expect to see about 7.4 V at the output. The circuit is physically constructed on a protoboard. Use your troubleshooting skills to find the problem.
Determine the value of each current in Figure 15-46, and describe the phase relationship of each with the applied voltage. Draw the current phasor diagram.
Convert the parallel circuit in Figure 15-49 to a series form.
In the series-parallel RC circuit of Figure 15-51, determine the following:(a) total impedance (b) total current (e) phase angle by which Itot leads Vs
Determine all currents in Figure 15-52. Draw a current phasor diagram.
Determine the power factor and the true powder in the circuit of Figure 15-59.
For the circuit in Figure 15-61, find the true power, the reactive power, and the apparent power.
Determine the total current and phase angle in Figure 15—42. Draw a phasor diagram showing the relationship of Vs, and Itot.
Calculate the output phase angle for each circuit in Figure 15-35.