1) Consider the electrical circuit shown below. The values are, ɛ = 15 V, R1 = 2 N, R2 = 4 N, R3 = 3 N, R4 = 2 N, R5 = 2 N, R6 = 6 N, and R, = 8 N. (a) Calculate the equivalent resistance (b) Calculate the total current (Itot) as shown in the figure (c) Calculate the current through resistance R1

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R1 = 20
R5 = 20
R2
= 40
R4
= 20
E
A
R6 = 60
R, = 80
R3 = 30
V = 15 Volts
Transcribed Image Text:R1 = 20 R5 = 20 R2 = 40 R4 = 20 E A R6 = 60 R, = 80 R3 = 30 V = 15 Volts
1) Consider the electrical circuit shown below. The values are, ɛ = 15 V, R1 = 2 N, R2 = 4 N,
R3 = 3 N, R4 = 2 N, R5 = 2 N, R6 = 6 N, and R, = 8 N.
(a) Calculate the equivalent resistance
(b) Calculate the total current (Itot) as shown in the figure
(c) Calculate the current through resistance R1
(d) Calculate the current through resistance R5
(e) Calculate the current through resistance R4
(f) Calculate the total joule heat dissipating in this circuit
(g) If the power company charge you $1 per kW-h, how much you will pay to run this circuit for
one year
%3D
Transcribed Image Text:1) Consider the electrical circuit shown below. The values are, ɛ = 15 V, R1 = 2 N, R2 = 4 N, R3 = 3 N, R4 = 2 N, R5 = 2 N, R6 = 6 N, and R, = 8 N. (a) Calculate the equivalent resistance (b) Calculate the total current (Itot) as shown in the figure (c) Calculate the current through resistance R1 (d) Calculate the current through resistance R5 (e) Calculate the current through resistance R4 (f) Calculate the total joule heat dissipating in this circuit (g) If the power company charge you $1 per kW-h, how much you will pay to run this circuit for one year %3D
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