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An RC series circuit is connected to a 277 volt, 60 Hz line. The resistor has a power dissipation of 146 watts and the capacitor is using 138 VARs. How much current is flowing in the circuit?
Create a circuit of three level sensitive D latches connected in series(the output of one is connected to the input of the next). Use a timing diagram to show how a clock with a long high time can cause the value at the input the first D latch
Calculate the primary and secondary impedances in ohms and also the magnetizing reactance in ohms on the LV side.
Determine the time constant of the circuit. - Write the mathematical equation for the voltage vC following the closing of the switch.
For this situation, what are the limits on the output voltage produced? Assume rz = 20 0 and fa la 0.2 inA for all available senors.
Consider a pn junction diode biased at I(D) = 1mA. A sinusoidal voltage is superimposed on V(D) such that the peak-to-peak sinusoidal current is 0.05I(D). Find the value of the applied peak-to-peak sinusoidal voltage if n = 1.5. Repeat problem for..
determine whether a three bit number , a3,a2,a1 is equal to another number b3,b2,b1 or if it is greater than that number (We do not need an output for less than) a)Show how the 7485 would be connected to accomplish this.
A 2-input NOR gate has inputs A and B. If the output of the gate remains LOW independent of the state of input A, what can be deduced about B
Solve these equations to find the expressions for the phasors corresponding to the voltages across the resistor and the capacitor.
The current regulator can be assumed as ideal, which means that the transfer function of the current regulation loop is unity. At t = 0s, the direction of the rotor flux linkage coincides with that of the magnetic axis of "a" phase winding.
For the network of given figure: - Find the total impedance ZT. - Determine the current Is. - Calculate IC using the current divider rule.
A series-connected load draws a current i(t)=4cos(100pt + 10°) A when the applied voltage is v(t) = 120cos(100pt-20°) V. Determine a) The circuit‘s apparent power b) The power factor, pf c) The value of the impedance Z
A sine wave has a peak amplitude of 2V and a frequency of 100Hz. Calculate the instantaneous voltage at a time of 250 micro seconds after the waveform passes through the 0-V baseline in a positive direction.
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