R5 R3 Rz Rz R9 R, R6 R8 Ry Suppose you have the following circuit diagram. Here R1 = 1.1 kN, R2 = 11 kN, R3 = 3.3 kN, R4 = 22 kN, R5 = 3.3 kN, R6 = 22 kSN, R7 = 2.2 kN, Rg = 22 kN, R9 = 22 kN are the resistances on the circuit where kN stands for kilo ohm. The electromotive forces of the batteries are E1 = 5 volts and E2 = 6 volts. Value of Røk = 12000 N, [Rik, the resistance equivalent to R5, R6, R7, R3 and R, between the terminals b and k.] a) Calculate the current through Ryk and call it Itk- b) Calculate the power dissipated through the R2 resistor c) Calculate the potential difference across the oc terminal.

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R5
R3
Rz
Rz
R9
R,
R6
R8
Ry
Suppose you have the following circuit diagram. Here R1 = 1.1 kN, R2 = 11 kN, R3 = 3.3 kN, R4 = 22 kN, R5 = 3.3 kN, R6 = 22 kSN,
R7 = 2.2 kN, Rg = 22 kN, R9 = 22 kN are the resistances on the circuit where kN stands for kilo ohm. The electromotive forces of the batteries are
E1 = 5 volts and E2 = 6 volts.
Value of Røk
= 12000 N, [Rik, the resistance equivalent to R5, R6, R7, R3 and R, between the terminals b and k.]
a) Calculate the current through Ryk and call it Itk-
b) Calculate the power dissipated through the R2 resistor
c) Calculate the potential difference across the oc terminal.
Transcribed Image Text:R5 R3 Rz Rz R9 R, R6 R8 Ry Suppose you have the following circuit diagram. Here R1 = 1.1 kN, R2 = 11 kN, R3 = 3.3 kN, R4 = 22 kN, R5 = 3.3 kN, R6 = 22 kSN, R7 = 2.2 kN, Rg = 22 kN, R9 = 22 kN are the resistances on the circuit where kN stands for kilo ohm. The electromotive forces of the batteries are E1 = 5 volts and E2 = 6 volts. Value of Røk = 12000 N, [Rik, the resistance equivalent to R5, R6, R7, R3 and R, between the terminals b and k.] a) Calculate the current through Ryk and call it Itk- b) Calculate the power dissipated through the R2 resistor c) Calculate the potential difference across the oc terminal.
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