PROCEDURE A: demonstrate that the effective or rms value of alternating current is equivalent in energy to the same value of direct current. 1. Connect the circuit diagram below and measure the voltage and current through each resistor, using 12 Volt DC supply. Measure also the power dissipated by each resistor. R1 500 Q R3 2 kn R2 1 kQ Record your measurements in table 1 below. R DIRECT CURRENT ALTERNATING CURRENT I, A V, volts P, watts I, A V, volts P, watts R1 R2 R3 TABLE 1

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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PROCEDURE A: demonstrate that the effective or rms value of
alternating current is equivalent in energy to the same value of
direct current.
1. Connect the circuit diagram below and measure the voltage and
current through each resistor, using 12 Volt DC supply. Measure also
the power dissipated by each resistor.
R1
500 Q
R3
2 kn
R2
1 kQ
Record your measurements in table 1 below.
R
DIRECT CURRENT
ALTERNATING CURRENT
I, A
V, volts | P, watts
I, A V, volts P, watts
R1
R2
R3
TABLE 1
2. Repeat procedure 1, but this time change the voltage supply into 12V
AC supply. Record your measurements in table 1.
3. Compare the three current, voltage and power value measurements
using DC and AC supply:
Transcribed Image Text:PROCEDURE A: demonstrate that the effective or rms value of alternating current is equivalent in energy to the same value of direct current. 1. Connect the circuit diagram below and measure the voltage and current through each resistor, using 12 Volt DC supply. Measure also the power dissipated by each resistor. R1 500 Q R3 2 kn R2 1 kQ Record your measurements in table 1 below. R DIRECT CURRENT ALTERNATING CURRENT I, A V, volts | P, watts I, A V, volts P, watts R1 R2 R3 TABLE 1 2. Repeat procedure 1, but this time change the voltage supply into 12V AC supply. Record your measurements in table 1. 3. Compare the three current, voltage and power value measurements using DC and AC supply:
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