3) Consider the simple Direct-Current (DC) circuit shown below. The purpose of this problem is to reinforce the concepts of how to analyze circuits, i.e., to conduct circuit analysis. Show all work. V = 12.0 V 3R=352 Label the circuit completely: i) Calculate the magnitude of the total current in the circuit, and then label the current magnitude and direction in the circuit diagram above; ii) Show the polarity of the power supply, in the diagram; ii) Show polarity of the voltage drop across the R = 3 Ohm resistor; and iv) Calculate the magnitude of the voltage drop across the R = 3 Ohm resistor, in Volts (V).

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Chapter20: Electric Current, Resistance, And Ohm's Law
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3) Consider the simple Direct-Current (DC) circuit shown below. The purpose of this problem is to
reinforce the concepts of how to analyze circuits, i.e., to conduct circuit analysis. Show all work.
V = 12.0 V
3R=352
Label the circuit completely: i) Calculate the magnitude of the total current in the circuit, and then
label the current magnitude and direction in the circuit diagram above; ii) Show the polarity of the
power supply, in the diagram; ii) Show polarity of the voltage drop across the R = 3 Ohm resistor;
and iv) Calculate the magnitude of the voltage drop across the R = 3 Ohm resistor, in Volts (V).
Transcribed Image Text:3) Consider the simple Direct-Current (DC) circuit shown below. The purpose of this problem is to reinforce the concepts of how to analyze circuits, i.e., to conduct circuit analysis. Show all work. V = 12.0 V 3R=352 Label the circuit completely: i) Calculate the magnitude of the total current in the circuit, and then label the current magnitude and direction in the circuit diagram above; ii) Show the polarity of the power supply, in the diagram; ii) Show polarity of the voltage drop across the R = 3 Ohm resistor; and iv) Calculate the magnitude of the voltage drop across the R = 3 Ohm resistor, in Volts (V).
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