Given V = 100 Volts and 1=20 Amps, find the conductance
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- An inductance of 1 henry and a resistance of 2 ohms are connected in series with battery of 6 e-0.0001 volt. . No current is flowing initially. When will the current measure 0.5 ampere?1.1Solve the total resistance, total current, individual currents, and individual voltages of the following dc circuits.How much is the current, I, at each of the following points? a. Point A b. Point B c. Point C d. Point D e. Point E f. Point F, in the cireuit below? R, = 10 N E F Applied voltage V, R = 20 N A 100 mA B C R = 30 N
- Find current io(t) for the following given figure.A Multimeter is used to measure a) Only AC current b) Only DC voltage c) Both AC and DC quantities d) Resistance only Select one: O a.b Ob.c O c. a O d. dQ- Two voltmeter of (0-300 V) range are connected in parallel to a A.C. circuit. Ône voltmeter is moving iron type reads 200 V. If the other is PMMC instrument, its reading will be
- The question is how to produce hv about 150 kv. A) What if we have a dc battery with a voltage of 9 volts? B) If we have ac voltage with a range of 220 volts?The hot resistance of an incandescent lamp is 10 ohms and the rated voltage is 50 V. Find the series resistance required to operate the lamp from an 80 V supplyDetermine the currents in the circuit.Determine the potential Vab between points a and b.
- A) Find the equivalent resistor of the circle between points a and b?B) If a constant voltage source (15V) is placed between points a and b, calculate a valueCurrent iS3. The figure on the left below shows a schematic diagram of a battery. The voltage measured by U1 is called the terminal voltage given R1 = 1 ohm. In the figure on the right below, the terminal voltage of each of the battery-resistor combination is Vr = 1.5 volts. Find the following: a. The current passing through R5. b. The currents passing through R1 and R3 C. The voltage across R1. d. The voltage of the battery EMF. e. The percentage of voltage loss ot the battery due to the internal resistance R1. The power dissipated by the internal resistance R1. g. The power dissipated by R5 if R1 = R2 = R3 = R4 = 0. h. The percentage of power dissipation loss due to the four resistors R1, R2, R3, and R4 f. R1 R3 S10 R1 U1 1.500 EMF EMF R5 100 V1 R2 $10 EMF R4 EMF EMFA battery has a 12.0-V emf and an internal resistance of 0.150 ohms. (a) What is the terminal voltage when it is connected to a 20.0-ohm load?