Shown in the figure below is an electrical circuit containing three resistors and two batteries. 13 www R₁ ww R3 R₂ www 1₂ • R₁ =90 • R₂ = 60 • R₂ = 10 Write down the Kirchhoff Junction equation and solve it for I, in terms of 12 and 13. Write the result here: I₁ = Write down the Kirchhoff Loop equation for a loop that starts at the lower left corner and follows the perimeter of the circuit diagram clockwise. 0 = X The resistors in the circuit have the following values: 10 Write down the Kirchhoff Loop equation for a loop that starts at the lower left corner and touches the components R₁, R₂, and 4V. 0=R₁₁+R₂1₂-4 Amperes Amperes Amperes 4 Solve for all the following (some answers may be negative): I₁ = 1₂ = | 13 = NOTE: For the equations, put in resistances and currents SYMBOLICALLY using variables like R₁,R₂,R3 and 1₁,12,13. Use numerical values of 10 and 4 for the voltages.
Shown in the figure below is an electrical circuit containing three resistors and two batteries. 13 www R₁ ww R3 R₂ www 1₂ • R₁ =90 • R₂ = 60 • R₂ = 10 Write down the Kirchhoff Junction equation and solve it for I, in terms of 12 and 13. Write the result here: I₁ = Write down the Kirchhoff Loop equation for a loop that starts at the lower left corner and follows the perimeter of the circuit diagram clockwise. 0 = X The resistors in the circuit have the following values: 10 Write down the Kirchhoff Loop equation for a loop that starts at the lower left corner and touches the components R₁, R₂, and 4V. 0=R₁₁+R₂1₂-4 Amperes Amperes Amperes 4 Solve for all the following (some answers may be negative): I₁ = 1₂ = | 13 = NOTE: For the equations, put in resistances and currents SYMBOLICALLY using variables like R₁,R₂,R3 and 1₁,12,13. Use numerical values of 10 and 4 for the voltages.
Delmar's Standard Textbook Of Electricity
7th Edition
ISBN:9781337900348
Author:Stephen L. Herman
Publisher:Stephen L. Herman
Chapter7: Parallel Circuits
Section: Chapter Questions
Problem 4PP: Using the rules for parallel circuits and Ohmslaw, solve for the missing values....
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KVL stands for Kirchhoff voltage law. KVL states that the total voltage drops around the loop in any closed electric circuit is equal to the sum of total voltage drop in the same closed loop.
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Question
![Shown in the figure below is an electrical circuit containing three resistors and two batteries.
13
www
R₁
ww
R3
R₂
www
1₂
• R₁ =90
• R₂ = 60
• R₂ = 10
Write down the Kirchhoff Junction equation and solve it for I, in terms of 12 and 13. Write the result here:
I₁ =
Write down the Kirchhoff Loop equation for a loop that starts at the lower left corner and follows the perimeter of the circuit diagram clockwise.
0 =
X
The resistors in the circuit have the following values:
10
Write down the Kirchhoff Loop equation for a loop that starts at the lower left corner and touches the components R₁, R₂, and 4V.
0=R₁₁+R₂1₂-4
Amperes
Amperes
Amperes
4
Solve for all the following (some answers may be negative):
I₁ =
1₂ = |
13 =
NOTE: For the equations, put in resistances and currents SYMBOLICALLY using variables like R₁,R₂,R3 and 1₁,12,13. Use numerical values of 10 and 4 for the voltages.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fdb489c6f-485f-4a8c-af24-f0100b31b711%2F002447d0-6249-488f-9837-5aa70e57766d%2Fqx7sigt_processed.png&w=3840&q=75)
Transcribed Image Text:Shown in the figure below is an electrical circuit containing three resistors and two batteries.
13
www
R₁
ww
R3
R₂
www
1₂
• R₁ =90
• R₂ = 60
• R₂ = 10
Write down the Kirchhoff Junction equation and solve it for I, in terms of 12 and 13. Write the result here:
I₁ =
Write down the Kirchhoff Loop equation for a loop that starts at the lower left corner and follows the perimeter of the circuit diagram clockwise.
0 =
X
The resistors in the circuit have the following values:
10
Write down the Kirchhoff Loop equation for a loop that starts at the lower left corner and touches the components R₁, R₂, and 4V.
0=R₁₁+R₂1₂-4
Amperes
Amperes
Amperes
4
Solve for all the following (some answers may be negative):
I₁ =
1₂ = |
13 =
NOTE: For the equations, put in resistances and currents SYMBOLICALLY using variables like R₁,R₂,R3 and 1₁,12,13. Use numerical values of 10 and 4 for the voltages.
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