Calculate the output voltage if V₁ = 1.47V,
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- Incandescent lighting of 500 W is connected in parallel with an inductive load. A clamp-on ammeter reveals a total circuit current of 7 A. What is the inductance of the load connected in parallel with the incandescent lights? Assume a voltage of 120 V and a frequency of 60 Hz.7. The resistor in an R-L series circuit has a voltage drop of 53 V, and the inductor has a voltage drop of 28 V. What is the applied voltage of the circuit?find zener voltage and resistance with given values:capacitor: 470 micro Fresistor: 12 ohmV out: 12V DCI out: 1AV in: 120V AC 60 Hzdiode: 0.7V
- An electric circuit contains an 8 ohm resistor in series with an inductor of 0.50 henries and a battery of E volts. At t=0 the current is E = 64sin8tAn electric circuit contains an 8 ohm resistor in series with an inductor of 0.50 henries and a battery of E volts. At t=0 the current is zero. Find the current at any time t > 0 and the maximum current if (a) E=64, (b) E=8te-16t, (c) E=32e-8t, (d) E = 64sin8tWhat is the value of the voltage v(t) after t=1.3863s in the circuit? AB=06, BA=60
- You connect a clamp-on ammeter and a voltmeter to a series LR circuit powered by a 60-Hz circuit. The voltage reads 120 V and the current is 0.715 A. The resistor is 150 W. What is the true power?There is no energy stored in the circuit at the time the voltage source is energized. 1. a) Find Vo, Io, and IL.2. b) Find vo, io, and iL for t≥0.a coil of resistance 10 ohm and inductor 0.02 henry is connected in series with another resistance of 6 ohm and inductance 15mh across a 230v 50hz supply
- Three capacitors are connected in parallel and have the following voltage ratings: C1 = 32 uF with 80 V, C2 = 65 uF with 220 V, and C3= 105 uF with 120V. Determine the total charge that C1 can hold. 2560 uC 2500 uC 2.56 uC 2.56 CCircuits 1 HW 4 Q7 The figure is right below the question there isn’t anything else that goes with itIdentify the circuit and calculate the output voltage for input voltages: V1 = 0.4V, V2 = 0.1V, V3 = 0.5V.