Compute the EQUIVALENT RESISTANCE of the circuit shown below. Then find the voltage drop across each resistor, the current through each resistor, & the current put out by the battery (l。). (R₁ = 7 £2, R₂ = 3, R3 = 52, R4 = 8, and V₁ = 29 V.) Vo Req = 2.083 ΧΩ Io = 5.81 A R3 R2 R1 M M R4 × I₁ = 1.73 A 12 1,86 A 13 = 1.86 A V₁ = 12.14 V × = = V₂ 5.57 V × V3= 9.29 V = = 14 = V4 0.36 A 2.86 V × =

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Compute the EQUIVALENT RESISTANCE of the circuit shown below. Then find the voltage drop across each resistor, the current through each
resistor, & the current put out by the battery (l。). (R₁ = 7 £2, R₂ = 3, R3 = 52, R4 = 8, and V₁ = 29 V.)
Vo
Req
=
2.083
ΧΩ
Io =
5.81 A
R3
R2
R1
M
M
R4
×
I₁ =
1.73 A
12
1,86 A
13 =
1.86 A
V₁ =
12.14 V
×
=
=
V₂
5.57 V
×
V3=
9.29 V
=
=
14
=
V4
0.36 A
2.86 V
×
=
Transcribed Image Text:Compute the EQUIVALENT RESISTANCE of the circuit shown below. Then find the voltage drop across each resistor, the current through each resistor, & the current put out by the battery (l。). (R₁ = 7 £2, R₂ = 3, R3 = 52, R4 = 8, and V₁ = 29 V.) Vo Req = 2.083 ΧΩ Io = 5.81 A R3 R2 R1 M M R4 × I₁ = 1.73 A 12 1,86 A 13 = 1.86 A V₁ = 12.14 V × = = V₂ 5.57 V × V3= 9.29 V = = 14 = V4 0.36 A 2.86 V × =
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