Question

R R2 b On the diagram above, label your prediction for the direction of current through each resistor and indicate the direct

Will Rate for Correct answer! Thank you.

0 0
Add a comment Improve this question Transcribed image text
Answer #1

RI II a For loop , V=I, R, + I2R2 For loop , o = I3Rz - I₂R2 For loop V = I, Ri+ Iz Rz For junna, I = I2 + Iz (In) Cont) ForPlease comment for any doubts.

Add a comment
Know the answer?
Add Answer to:
Will Rate for Correct answer! Thank you. R R2 b On the diagram above, label your prediction for the direction of curren...
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for? Ask your own homework help question. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • Assume the resistance values are R1 = 2,200 Ohm, R2 = 1,300 Ohm, R3 = 4,200...

    Assume the resistance values are R1 = 2,200 Ohm, R2 = 1,300 Ohm, R3 = 4,200 Ohm, and R4 = 5,900 Ohm, and the battery emfs are epsilon1 = 1.5 V and Epsilon2 = 3.0 V. Use Kirchhoff?s rules to analyze the circuit in the figure below. (a) Let I1 be the branch current though R1, I2 be the branch current through R2, and I3 be the branch current through R3. Write Kirchhoff?s loop rule relation for a loop that...

  • please help with problems 7 and 8, I am extremely confused! Part 2: Kirchhoff's Rules For...

    please help with problems 7 and 8, I am extremely confused! Part 2: Kirchhoff's Rules For the circuit shown below, the directions of the currents through the circuit elements has been chosen arbitrarily. Using Kirchhoff's rules, you will determine the actual currents through the circuit elements. (Yes, this circuit could be analyzed using equivalent resistance, but don't do it that way.) R1: 752 Kirchhoff's Junction Rule 4) Start by choosing a junction. Write Kirchhoft's Junction rule for that junction below...

  • Just part D Part II.. Comprehensive question. In find the ways to solutions"-v- this question, drawing...

    Just part D Part II.. Comprehensive question. In find the ways to solutions"-v- this question, drawing simplified equivalent circuits will help you r︶t︹ 1. In the figure shown, E.-10.0v,a-16.0 v,R. 4.0 Ω, Ram 2.0aR,-6.0 Ω. 0 (a) Label and designate the currents through each resistor, including the direction of the currents. Write down an equation that relates these labeled quantities using the current junction rule. (b) Select and label two loops, then use the Kirchhoff's loop rule to write down...

  • Pre-lab EM-5 Ohm's Law and Kirchhoff's Rules Ohm's Law The resistance R of a device can...

    Pre-lab EM-5 Ohm's Law and Kirchhoff's Rules Ohm's Law The resistance R of a device can be determined by either directly measuring the resistance using an ohmmeter, or by measuring the current I through it and the voltage Vacross it, and then calculating R using Ohm's Law V R= (1) If the voltage across a resistor is 10V, and the current passing through it is 2.5 mA. of the resistor? What is the resistance R= Ω. Kirchhoffs Loop Rule Around...

  • The figure shows acircuit that illustrates the concept ofloops, which arecolored red and labeled loop...

    The figure shows a circuit that illustrates the concept of loops, which are colored red and labeled loop 1 and loop 2. Loop 1 is the loop around the entire circuit, whereas loop 2 is the smaller loop on the right. To apply the loop rule you would add the voltage changes of all circuit elements around the chosen loop. The figure contains two junctions (where three or more wires meet)--they are at the ends of the resistor labeled R3....

  • 1) 2) 3) Using Ohm's Law, the answer for 2 is: (don't need an answer for...

    1) 2) 3) Using Ohm's Law, the answer for 2 is: (don't need an answer for number 3) 4) R1 V. + R2 12 R3 https://drive.google.com/file/d/1WJUWDo8q7wGCQmwBgMvR04B_SY-MNJNN/view?usp=sharing Consider the circuit in Figure 2. We will assume that both the power supply's potentials V and V, along with the resistors R, through R3 are known quantities where the currents flowing through the circuit are unknown. Since there are three unknown currents in this circuit, three linearly independent equations are needed in order...

  • Problem 2 (15 points) Use the circuit given to answer the following questions. a. On the...

    Problem 2 (15 points) Use the circuit given to answer the following questions. a. On the figure, identify and label the different currents in this circuit. Be sure to give them directions. [2 point] b. Use Kirchoff's loop rule to write down equations for all 3 possible loops that could be used to solve for the currents in this circuit (You do not need to solve them!) 19 points = V, - IR, - V2 - IR4 so Vo vz...

  • I need aome help with this part of my lab. thank you! Kirchoff's Laws 4. Now...

    I need aome help with this part of my lab. thank you! Kirchoff's Laws 4. Now click on this link, which is another circuit I modified and created for this lab: http://tinyurl.com/y8toda84 A. Do not Click run/Stop. This is a circuit that has elements that are neither series nor parallel, as well as multiple voltage sources. The best way for us to analyze this circuit is to use Kirchoff's laws. From the text here are Kirchoff's laws: 1) The sum...

  • please solve all of these questions. I R = 60, R2 = 8 . R3 =...

    please solve all of these questions. I R = 60, R2 = 8 . R3 = 20. E1 = 4 V, and <2 = 14 V, what is the current in Rz? Multiple Choice O 1A up 1A down Prey 12 of 16 E If 64 coulombs flow along a wire in 40 seconds, what is the average current? Multiple Choice 6.66 points o o • o < Prev 1 of 15 !! Next > When current flows through a...

  • ri R$ 7:) Here, each V represents a change in voltage (in volts) at a battery,...

    ri R$ 7:) Here, each V represents a change in voltage (in volts) at a battery, each R represents a resistance (in ohms) at a resistor and each I represents a current (in amps) through a wire. These quantities obey two simple laws: 1. Ohm's law: The voltage drop across a resistor is V = IR. 2. Kirchhoff's second law: The sum of all the voltage changes in a closed loop is zero. Using these two laws, we can construct...

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT