a) Calculate the equivalent resistance in a series circuit. b) Calculate the current flow the circuit using Ohm's Law. c) Calculate the voltage on the R1 using Ohm's Law. Voltmeter R1 R2 V 260 2 540 Q 2.4 V
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- Derive the mathematical expression for the output voltage of the circuit given in Figure 2(a)For the circuit below, if I1 = 3A; determine the current I2 (in Amperes) and the potential difference (in Volts).In the series and parallel combination circuit as shown in Figure 3, derive a formula for the equivalent resistance R without substituting the values of R1, R2, and R3.
- Consider the following diagram. The current passing through R1 is 200 mA, what is the voltage across resistor R2 and the current current that passes through the same resistor if R1 is 8 Ohm and R2 is 4 Ohm? Show all pertinent solutions.Three resistors having resistances of 4.0 Ω, 6.0 Ω, and 10.0 Ω are connected in parallel. If the combination is connected to an ideal 12-V. What is the total resistance of the circuit? What is the current through each resistor? What is the power dissipated by the 6.0 Ω resistor? Clearly state the formulae you’re using and what your letters/symbols mean.Explain the flow of current, voltage, and resistance for each resistor and then for the whole system in the circuit. Give the reasoning
- A circuit has 3 resistors connected in parallel to a 75 V DC source. The resistances are 120, 100, and 12 Ohms, respectively. Draw the circuit diagram in the paper that will show your work. Use the correct units. What is the equivalent conductance of the circuit? What is the current through Resistor 1? What is the current through Resistor 2?Three resistors having resistances of 4.0 Ω, 6.0 Ω, and 10.0 Ω are now connected in series. If the combination is connected to an ideal 12-V. What is the total resistance of the circuit? What is the current through each resistor? What is the voltage drop across each resistor? What is the power dissipated by the 6.0 Ω resistor? Clearly state the formulae you’re using and what your letters/symbols mean.In the parallel circuit as shown in figure 2, if the resistance of R3 was increased, what change would you observe in the value of I and the in the value of I1, I2, I3?
- Four circuits have the form shown in the diagram below. The capacitor is initially uncharged and the switch S is open. Rank the circuits according to the current just after switch S is closed least to greatest. The values of the emf E, resistance R, and capacitance C for each of the circuits areSimplify the complex circuit below to find the total resistance and total current if 20-V supplied. Show your illustration and computations. Tabulate the voltage drop and power dissipated across each resistor.The terminal voltage of the battery in figure 4 is 16.6 V. What is the resistance R of the external resistor? What is the internal resistance r of the 18.0-V battery? Note: The figure is provided below.