تم الحل ✓
categoryهندسة كهربائية
schoolبكالوريوس
event_available2026-07-13
السؤال
Transcribed Image Text:
PROCEDURE
1.
Table 8-1, column 3. Compute the total resistance for a series connection by adding the measured
Obtain the resistors listed in Table 8-1. Measure each resistor and record the measured value in
values. Enter the computed total resistance in Table 8-1.
Table 8-1
Resistor
Listed Measured
R
Value
Value
Vx = Vs
RT)
V (measured)
R₁
330
330 ohm
1.33 v
1.331 v
R₂
470
470 ohm
1.98 V
1.98 v
R₂
680
680 ohm
2.47 v
2047 v
2.72
R₁
1000
1000 ohm 4.03 V
4.03 v
Total
2480 ohm 2480ohm
10.0 V
9.99 v
2.
3.
4.
5.
Connect the resistors in the series circuit illustrated in Figure 8-4. With the source disconnected,
measure the total resistance of the series connection and verify that it agrees with your computed value.
Apply the voltage divider rule to each resistor, one at a time, to compute the expected voltage
across that resistor. Use the measured values of resistance and a source voltage of +10 V. Record
the computed voltages (Vx) in Table 8-1, column 4.
Turn on the power and measure the voltage across each resistor. Record the measured voltage
drops in Table 8-1, column 5. Your measured voltages should agree with your computed values.
Observe the voltages measured in step 4. In the space provided, draw the voltage divider, showing
how you could obtain an output of +6.8 V.
+10 V
330
R₂
Figure 8-4
680 £2
R
1000
72
९.
330
5
34700
R₁
Circuit for step 5
6500
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