Solve for the equivalent resistance and the current through R5.
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Solve for the equivalent resistance and the current through R5.
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- Calculate the difference A B if A=10236.87 and B=10453.13°. Show your solution graphically.1. What impedance vector 0 – j22 represents:A. A pure resistance.B. A pure inductance.C. A pure capacitance.D. An inductance combined with a resistance.58. || What are the charge on and the potential difference across each capacitor in FIGURE P26.58? + 9 V HE C₁ = 5 μF C₂ = 15 μF C3 = 30 μF FIGURE P26.58 + 12 V C FIGURE P26.59 с a C
- Q52. How much energy is stored by a 100 m H inductance with a current of 1 A? A. 100 J B. 1 J C. 0.05 J D. 0.01 JAC 15. What would the equivalent resistance be of a 159 uF capacitor? 16. What is the RMS voltage of a circuit if the peak voltage is 170 volts? 17. If the RMS voltage is 240 volts AC, what is the peak voltage? 18. What is the formula for finding an inductors equivalent resistance? 19. What is the equivalent resistance of an inductor with 0.17 henrys? 20. What is the symbol of an AC power source? 21. What is the equivalent inductance of a parallel circuit with a 0.01L, 0.02L, and 1.7L inductor? 22. What is the equivalent inductance of a series circuit with a 0.03L, 0.04L, and 1.6L inductor? 23. A transformer with a primary voltage of 480 volts and a turns ratio of 2:1 will have what secondary voltage? 24. A Power Network is comprised of what three components? 25. What is the main difference between a fuse and a circuit breaker?A 7775 4777 B 7025 47025 D 7025v 47O 25v E Capacitors A-E 2. Look at the picture above. Which capacitor do you think will hold the most charge? Why? 3. Describe simply how a capacitor works. What can a capacitor be compared to?
- An air filled parallel-plate capacitor is connected to a 12 Volts battery, the battery is disconnected when it is fully charged to 7.3 nC. The separation distance between the plates is d1= 8 cm. Now, If the plates are moved to a new distance d233 cm. the new energy stored in the capacitor is O a. 13.14 nJ O b. 8.21 nJ O c. 1.64 nJ O d. 10.96 nJ O e. 5.47 nJ O f. 16.42 nJ152130 222 Ⓒ520° Fj² 7 Find voltage drop Mutual inductance Majt = + {1.2 V. on 12 resistance Nex (the same for allIf the input voltage for the given circuit below is 220 V at 60 Hz, the load resistance (RL) is 3302 and the average output voltage is 20 V. Assume the diodes to be silicon diodes. Determine the turns ratio of the transformer used. If a capacitor of 100 µF is connected parallel to the load resistor (RL), Determine the ripple factor. D3 D1 V + RL D2 D4 a. The turns ratio of transformer (Npri/Nsec) is b. The Ripple factor is illl
- 5. 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?in the image below, Please find the voltage across the resistor at time t = 0.00069 seconds. The energy stored in the capacitor and inductor at t=0 is 0 Joules. The values are I1 = 75 A, R = 0.059 ohms, L = 0.01 Henries, C = 0.04 Farads.17 A Capacitor 10 stores 0124 Cat volts. Its Capacitance is ? A