6. Use current division to find the steady state expression for i, in the circuit below if i, = 400 cos 20,000t mA. io 200 Ω 125 nF 60 Ω 60 mH
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- Inductive Circuits Fill in all the missing values. Refer to the following formulas: XL=2fLL=XL2ff=XL2L Inductance (H) Frequency (Hz) Inductive Reactance ( ) 1.2 60 0.085 213.628 1000 4712.389 0.65 600 3.6 678.584 25 411.459 0.5 60 0.85 6408.849 20 201.062 0.45 400 4.8 2412.743 1000 40.8415. Suppose the following circuit is left open for a long time. 5000 22 24 V (a) What is the facial curren What is the carte II What is the ches What is the not the pos 80mF when we close thei 90s after we close the switch? dissipe the resistor 90s arter ene capacitor ons after we close the suit Close the switchi difference across the spacitor 008 after we close the switch across the resisto we close the swit 12 the potential (g) What is the energy stored in the capacitor 90s after we close the switch? (h) What is the energy dissipated by the resistor during the first 90s since the switch is closed?2_53528980697... -> For the circuit shown below, detemine the voltage of the -j10 2 capacitive reactance. -j5 0 ILOA(T) ==j102 jlon is Q 102 O 0.5L-90 52 A.
- If v;(t) is a step voltage in the network shown in Figure 8, find the value of settling time such that a 20% overshoot in voltage will be seen across the capacitor if C = 1uF and L = 1H. CVo(t) Figure 89. Recall that Kirchhoff's laws help to get the current in circuits. Consider the following circuit: L R I(t) C +q(t) -q(t) Ignore the alternating power for this problem. a) What is the voltage over the resistor if it has a resistance of R ohms and the current is I ampere? b) What is the voltage over the capacitor if the capacitance is C and the charge on the capacitor is q. c) What is the voltage over the inductor if it has an inductance of L Henry? The answer must be in a form of a differential equation.QUESTION 1 A 1µF capacitor, a 150mH ideal inductor, and a 1.2k ohm resistor are connected in series with a function generator. Find the apparent power of the circuit if the supply voltage is 120V RMS 750HZ. O 25.9 VA O 8.75 VA O 11.1 VA O 1.55 VA
- In the following figure, the switch is left in position a for a long time interval and is then quickly thrown to position b. Find and rank the magnitudes of the voltages (V, VL, VRI, Vr2) across the four circuit elements a short time thereafter from the largest to the smallest. Vs 12.0 V 2.00 H 1 200 0 VRI 12.0 0 Vr2Problem 4 Given the circuit with input of 80HZ, • Find the turns ratio • Find Vp(sec) • Find Vo when capacitor is removed. • Find PIV rating • Find Vripple (p-p) • Find ripple factor (rf) 5:2 Use practical Si diode Rurr 100Vrms RL 3.3 k2 C 100 uF lllSelect all correct statement(s):1, The equivalent resistance for resistors in parallel is the harmonic mean of all resistors;2, The equivalent capacitance for capacitors in series is the sum of all capacitors;3, The equivalent inductance for inductors in series is the sum of all resistors.32None of them is correct1
- 7- For the circuit below a) Find tbe time constant b) Sketch the waveforms for in, a when you close the switch AK 31m HA source voltage is connected across a 10ohm resistor. What is the la place transform of its currentTime left 0 A resistor of 42 ohm is connected in series with a capacitor of 50 micro farad. if a supply of 240 V, 60 Hz is connected across the arrangement then the current flowing in the capacitor is. O a. 3.14 A O b. 35.4 A O c. 31.4 A O d. 3.54 A