4.00 kN R3 R2 3.00 kN 2.00 kN R1 ) the current in each resistor shown in the figure above = 0.28 '1 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 = 3.52 2 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 = 3.8 '3 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 ) the potential difference between points c and f 70.96 Your incorrect answer may have resulted from roundoff error. Make sure you keep extra significant figures in inte agnitude of potential difference

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
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Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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Using Kirchhoff's rules, find the following. (E, = 70.4 V, E, = 60.4 V, and E, = 78.6 V.)
4.00 kN
d
E
E,
R3
R2
3.00 kN
2.00 kN
a
R1
(a) the current in each resistor shown in the figure above
= 0.28
1 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
= 3.52
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
= 3.8
R3 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
(b) the potential difference between points c and f
70.96
magnitude of potential difference
Your incorrect answer may have resulted from roundoff error. Make sure you keep extra significant figures in intermediate steps of your calculation. V
point at higher potential
Transcribed Image Text:Using Kirchhoff's rules, find the following. (E, = 70.4 V, E, = 60.4 V, and E, = 78.6 V.) 4.00 kN d E E, R3 R2 3.00 kN 2.00 kN a R1 (a) the current in each resistor shown in the figure above = 0.28 1 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 = 3.52 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 = 3.8 R3 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 (b) the potential difference between points c and f 70.96 magnitude of potential difference Your incorrect answer may have resulted from roundoff error. Make sure you keep extra significant figures in intermediate steps of your calculation. V point at higher potential
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