%3D %3! Using Kirchhoff's rules, find the following. (6 = 70.6 V, 62 = 60.6 V, and &3 = 79.4 V.) 4.00 kN E2 Es R3 R2 3.00 kN 2.00 kN R1 (a) the current in each resistor shown in the figure above 2.98 *R1 Apply Kirchhoft's rules to write a set of simultaneous equations that can be solved for the current in each part of the circuit. mA 0.52 "R2 Apply Kirchhoff's rules to write a set of simultaneous equations that can be solved for the current in each part of the circuit. mA 2.47 IR3 V MA (b) the potential difference between points c and f 69.6 magnitude of potential difference point at higher potential

University Physics Volume 2
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ISBN:9781938168161
Author:OpenStax
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Chapter9: Current And Resistance
Section: Chapter Questions
Problem 55P: A 20.00-V battery is used to supply current to a 10-k resistor. Assume the voltage drop across any...
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Using Kirchhoff's rules, find the following. (E, = 70.6 V, 6, = 60.6 V, and &, = 79.4 V.)
4.00 kN
d
|E,
R3
R2 3.00 kn
2.00 kN
a
R1
(a) the current in each resistor shown in the figure above
= |2.98
Apply Kirchhoff's rules to write a set of simultaneous equations that can be solved for the current in each part of the circuit. mA
IR,
= 0.52
K2 Apply Kirchhoff's rules to write a set of simultaneous equations that can be solved for the current in each part of the circuit, mA
= 2.47
(b) the potential difference between points c and f
magnitude of potential difference
69.6
V
point at higher potential
Transcribed Image Text:Using Kirchhoff's rules, find the following. (E, = 70.6 V, 6, = 60.6 V, and &, = 79.4 V.) 4.00 kN d |E, R3 R2 3.00 kn 2.00 kN a R1 (a) the current in each resistor shown in the figure above = |2.98 Apply Kirchhoff's rules to write a set of simultaneous equations that can be solved for the current in each part of the circuit. mA IR, = 0.52 K2 Apply Kirchhoff's rules to write a set of simultaneous equations that can be solved for the current in each part of the circuit, mA = 2.47 (b) the potential difference between points c and f magnitude of potential difference 69.6 V point at higher potential
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