A 5-Ohm resistor is in parallel with a 20-Ohm resistor, is supplied by a 32-V dc battery. Calculate the total current. O 1.6 A O 4A O 8A O 6.4 A
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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.Moving to the next question prevents changes to this answer. Quèstion 1 A direct current (DC) of 4A flows into a previously uncharged 20 pF capacitor for 3 ms. Determine the voltage between the plates. O A. None of the given answers O B. 200 V OC. 800 V O D. 500 V O E. 300 V OF. 600 V A Moving to the next question prevents changes to this answer.Given the following Resistances and Capacitors in Series and Voltage Source: R1 = 9 ohms R2 = 5 ohms C1 = 0.454 Farad C2 = 0.992 Farad Vs = 10,246 Volts Frequency = 70 Hz What is the Amplitude of the voltage across C1?
- Determine the loop currents Ia, I,, and Ic. 100 Ic 100 100 100 100 Ib 55V 100 V laC -Q (A) 0.25 uF 10V 2uF 4uF (B) Figure 3: 3. In Figure 3 the capacitors were discharged before being connected to the battery. (a) In Figure 3A the net positive charge delivered by the battery is +Q1 to C1 and a net negative charge -[Q2 + Q3] is delivered to C2 and C3 [-Q2 is delivered to C2 and -Q3 to C3]. From conservation of charge[net charge is zero since both the battery and the capacitors have a zero net excess charge] and path independence of the electric field[sum of voltages must add up to zero for a closed path or conservation of energy]: Q1 + (-Q2) + (-Q3) = 0 conservation of charge +%-왕-용 (True, False) = 0 conservation of energy +V - = 0 conservation of energy (b) If (a) is true then the charge Q1, Q2 and Q3 follow from above three equations as C1(C2 + C3) V Q2 = Ci + C2 + C3 C1 C3 Ci + C2 + C3 Q1 = Q3 = V, (True, False) C1 + C2 + C3 (c) In Figure 3A the net positive charge delivered by the battery is Qtot = Q1 = C1(C2+C3) v which implies an equivalent capacitance of Qtot…1. Convert the following current sourcc into an equivalent voltage source and draw the equivalent circuit. 40 ZAL-5313 Ve Polar Zeg Polar 2. Convert the following current source into an equivalent voltage source and draw the equivalent circuit. R 400 200 240mA Z30 Vea Polar Zeg Polar
- 7. Determine all of the resistor values in figure below. if RT = 7730. 15.53 mA 3.64 mA R₁ ww R₂ www +₁ 6.67 mA R3 www R₁ 3.08 mA%3D a) what is the puwer burned into Re? b) What valve of R aximizes PzThe voltage divider shown in the figure has a potential difference (V) between point A and B and a potential difference (VO) between points C and D. What is V FO? A B RM 2R O A. 2 OB. 4 O C.3 OD. S M 2R R :2R C D
- Three resistance 14. 5 Q, 25. 5 Q and 60 Q are connected in series across 200 V. What will be the voltage drop across 14. 5 Q (a) 29 V (b) 13. 5 V (c) 14 V (d) 18 Vcalkulate the Current through and Load Voltage acress the hond Norton'stheorem. %3DWhat is the value of Rin ohms such that the current through the 25 ohm resistance is zero amperes. 100 45 0 25 Q 100 V RO 20 Q Type your numencarswen pnc sumN 7:52 Et C S/10/2 99+ +