1. Find the equivalent resistance Req in terms of all the resistances R1, R2 and R3 in Figure 1 with the use of the formula bellow: 1 REQ = Ra || R, || R. = (+ R1' R2' R3 V1 R1 R2 R3 Figure 1 2. Calculate the Voltage, Current and power for the 3 resistors for the circuit of Figure 1 and fill the values in table 1 Voltage (V) Current (mA) Power (mw) Calculated Calculated Calculated 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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B. Components Used
Part
Values
10.5 ΚΩ-10,500 Ω
%3D
R2
1.6 kn = 1,600
R3
5.5 kO= 5,500
Vs1
5 V
Transcribed Image Text:B. Components Used Part Values 10.5 ΚΩ-10,500 Ω %3D R2 1.6 kn = 1,600 R3 5.5 kO= 5,500 Vs1 5 V
1. Hand Calculation
1. Find the equivalent resistance Req in terms of all the resistances R1, R2 and
R3 in Figure 1 with the use of the formula bellow:
1.
= (-
R1 R2' R3
1
RgQ = Ra || Rp || R.
V1
R1
R2
R3
Figure 1
2. Calculate the Voltage, Current and power for the 3 resistors for the circuit of
Figure 1 and fill the values in table 1
Voltage (V)
Current (mA)
Power (mW)
Calculated
Calculated
Calculated
R1
R2
R3
Table 1
Transcribed Image Text:1. Hand Calculation 1. Find the equivalent resistance Req in terms of all the resistances R1, R2 and R3 in Figure 1 with the use of the formula bellow: 1. = (- R1 R2' R3 1 RgQ = Ra || Rp || R. V1 R1 R2 R3 Figure 1 2. Calculate the Voltage, Current and power for the 3 resistors for the circuit of Figure 1 and fill the values in table 1 Voltage (V) Current (mA) Power (mW) Calculated Calculated Calculated R1 R2 R3 Table 1
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